Benzenamine 4 Iodo 2 Methoxy 4 Iodo 2 Methoxy Phenylamine
Iodobenzene

Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine

Fengxi Chemical

    Specifications

    HS Code

    546565

    Chemical Formula C7H8INO2
    Molar Mass 265.05 g/mol
    Appearance Solid (usually)
    Melting Point Varies, specific value depends on purity
    Boiling Point Varies, specific value depends on purity
    Solubility In Water Low solubility
    Solubility In Organic Solvents Moderate solubility in some organic solvents like ethanol, acetone
    Density Data may vary depending on form
    Odor Typical amine - like odor
    Ph Aqueous Solution Basic, pH > 7
    Chemical Formula C7H8INO2
    Molecular Weight 263.05
    Appearance Solid
    Color Off - white to light yellow
    Odor Typical amine - like odor
    Melting Point 95 - 99 °C
    Solubility In Water Slightly soluble
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, acetone
    Density 1.86 g/cm³
    Flash Point 120.9 °C
    Chemical Formula C7H8INO2
    Molar Mass 265.05 g/mol
    Appearance Solid (predicted)
    Boiling Point Estimated around 335 - 340 °C (under normal pressure, estimated)
    Melting Point Estimated around 110 - 115 °C (estimated)
    Density Estimated around 1.9 g/cm³ (estimated)
    Solubility In Water Low solubility (predicted)
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, dichloromethane (predicted)
    Pka Value Estimated around 4 - 5 (for the amino group, estimated)
    Vapor Pressure Very low at room temperature (estimated)

    As an accredited Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100g of 4 - iodo - 2 - methoxy - benzenamine packaged in a sealed chemical - grade container.
    Storage 4 - iodo - 2 - methoxy - benzenamine (4 - iodo - 2 - methoxy - phenylamine) should be stored in a cool, dry, well - ventilated area, away from heat sources and open flames. Keep it in a tightly sealed container to prevent exposure to air and moisture, which could potentially lead to oxidation or hydrolysis. Store separately from oxidizing agents and incompatible substances to avoid chemical reactions.
    Shipping **Shipping Description for 4 - iodo - 2 - methoxy - benzenamine**: This chemical should be shipped in sealed, corrosion - resistant containers. It must comply with hazardous material regulations, labeled clearly, and transported by carriers trained in handling such chemicals to ensure safety.
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    Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine
    General Information
    Historical Development
    #About the historical development of 4-iodine-2-methoxyaniline
    Throughout the ages, the exploration and development of chemical substances has been an important tributary of scientific evolution. This 4-iodine-2-methoxyaniline has also left marks in the long years.
    At the beginning, the chemical knowledge was still shallow, and the understanding of complex substances was limited. With the passage of time, science and technology became more and more advanced, and researchers focused on this compound. At first, after many attempts and mistakes to explore its structure, a preliminary understanding was obtained.
    After the time, the synthesis method was continuously improved. From the initial cumbersome and inefficient means, the gradual change to a more delicate and simple path. Many pioneers worked in the laboratory day and night without fear of failure.
    Through the accumulation of countless experiments, its chemical properties and reaction laws were clarified, and its potential in the fields of medicine and materials was gradually revealed, paving the way for future related research and applications. The historical development of this compound is really a vivid chapter of scientific progress.
    Product Overview
    Today there is a substance called 4-Iodo-2-Methoxy-Benzenamine, also known as 4-Iodo-2-Methoxy-Phenylamine. This substance is chemically made. It has a unique nature, with a specific layout of iodine and methoxy groups in the benzene ring. The introduction of iodine atoms adds new variables to the reactivity of the substance, or it emerges in nucleophilic substitution reactions. The existence of methoxy groups also affects the distribution of its electron cloud, which is related to the conjugation effect and the wonder of electron push-pull. The appearance of this substance may be powder or crystal, depending on the preparation conditions. In the field of organic synthesis, it can be used as a key intermediate, paving the way for the construction of many complex organic molecules. It is expected to play a significant role in many fields such as medicinal chemistry and materials science. It is urgent for us to explore and analyze it in depth in order to understand its potential for more mysteries and applications.
    Physical & Chemical Properties
    4-Iodine-2-methoxy aniline (4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine) is a special compound. Its physical and chemical properties are particularly critical. Looking at its physical properties, it may be a solid state at room temperature, and the compounds covering this structure are mostly solid. The color may be characteristic, but it may be a white to light yellow solid, which is related to the atoms and chemical bonds in its structure.
    Discussing chemical properties, it contains an amine group, which is alkaline to a certain extent, and can be neutralized with acids. The presence of iodine in the halogen atom gives it some properties of halogenated hydrocarbons, such as participating in nucleophilic substitution reactions. Methoxy groups not only affect the polarity of molecules, but also play a role in the reactivity. This compound exhibits a variety of chemical behaviors in the path of organic synthesis, or due to different reaction conditions, such as blending with different reagents or generating various derivatives, thus providing opportunities for applications in the fields of materials science and drug development.
    Technical Specifications & Labeling
    "Process Specification and Identification (Product Parameters) for Iodized Methoxyaniline"
    There is now a process for iodized methoxyaniline, which is called "Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine" product. At the beginning of the process, the raw materials need to be selected. The materials used should meet the standards of high purity, and the impurities should not be too many.
    In the reactor, control the appropriate temperature and pressure. With a delicate ratio, make each material phase, stir evenly during it, and do not make it biased. During the reaction process, observe the phenomenon carefully, and adjust the number of processes according to it.
    After the reaction is completed, the product is refined. Use distillation and extraction to remove impurities and store essence to obtain a pure product. The finished product must comply with strict labeling regulations, and the product parameters such as composition, content, batch, etc. must be clearly defined by the guarantor. In this way, it is accurate to meet the process specifications and labeling, resulting in excellent products.
    Preparation Method
    To prepare 4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine), the raw materials and production process are the key. First take an appropriate amount of 4-Iodo-2-Methoxy-Nitrobenzene, and use iron powder and hydrochloric acid as a reduction system to carry out the reduction reaction. This step needs to be controlled at a moderate temperature to make the reaction proceed smoothly. After the reaction is completed, the organic phase containing the product is extracted with a suitable organic reagent.
    Then it needs to be refined to remove impurities and improve the purity of the product by vacuum distillation. This process must pay attention to the control of vacuum and temperature to avoid product decomposition. After this operation, pure 4-iodine-2-methoxyaniline products can be obtained. The preparation process is interlocking, and all links need to be precisely controlled to obtain satisfactory results.
    Chemical Reactions & Modifications
    There is a substance called 4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine). In the eyes of the chemist, its chemical reaction and properties are extremely critical.
    Looking at this substance, its chemical properties are variable and subtle. The reaction often varies according to the environment, and changes in temperature and medium can make it different. In order to achieve the delicacy of this 4-Iodo-2-Methoxy-Aniline reaction, it is necessary to observe its changes and understand its laws. Or you can try different methods and change the external conditions to see its changes.
    And study this thing carefully, or it can make a big difference in the fields of medicine and materials. If you want to make good use of it, you must understand its reaction and property changes. Transformers should take diligence as the path and research as the boat, find the best reaction strategy, develop its chemical beauty, gain understanding of this thing, and explore more applications of it, opening up new paths for both academic and practical.
    Synonyms & Product Names
    "Benzenamine, 4-iodine-2-methoxy-4-iodine-2-methoxy-aniline, same trade name"
    There is now a chemical product, called Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine. The same trade name of this product is important in my research. Those who are the same have different names because of the similarity of chemical manufacturing and special characteristics. And the trade name is determined by the market.
    This 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine, or the characteristics of chemical manufacturing, is similar. For example, the arrangement and function of the methoxy group of the iodine atom, the same in the chemical world, are different because of their properties. Its trade name, or the direction of market demand and application. If the merchant wants to use this name in the product, it will recognize its characteristics, which is conducive to the sales flow.
    These two, together, focus on the exploration of the product, to help us clarify the characteristics of the product; the name of the product is beneficial to the business, and it is indispensable to make the business work.
    Safety & Operational Standards
    "Regulations for the Safety and Operation of Phenethylamine Compounds"
    There are compounds today, called "4-iodine-2-methoxyphenethylamine", which are in the field of chemical research, and the safety and operation standards are the most important.
    This compound has unique properties. Iodine and methoxy are attached to the benzene ring, which affects the activity and stability of its reaction. At the beginning of operation, it should be operated in a place with excellent ventilation and no source of fire. Because chemicals are volatile and dangerous to ignition, ventilation can reduce the risk of vapor accumulation, and avoid the disaster of deflagration in addition to the source of fire.
    It is also necessary to be rigorous when it comes to storage. Use an airtight device to hold it, and place it in a cool and dark place. Airtight prevents it from reacting with air components to cause qualitative change, cold and dark, due to temperature and light or breaking its structure. As "Mengxi Brush Talk" says, "When things are hidden, they should be observed", and the same is true.
    When using, the equipment should be clean and accurate. Unclean is mixed with its quality, and if the quantity is poor, the reaction path can be messed up. And the operator must be fully protected. Wear protective clothing, goggles and gloves to avoid damage to the skin, eyes and contact.
    Recycling is also in accordance with regulations. Do not discard it at will, for fear of polluting the environment. According to its chemical classification treatment, or decomposition, or converted into harmless things. In this way, to ensure the safety of the experiment, the environment is clean, and the principle of research and development is far-reaching.
    Application Area
    #4 - Iodo - 2 - Methoxy - Phenylamine (Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine) is a commonly used compound in organic synthesis, and its application field is quite extensive.
    In the field of pharmaceutical chemistry, this substance can be used as a key intermediate to help create new drugs. Because of its unique chemical structure, it can be combined with specific targets in organisms, and after rational chemical modification and modification, it may be able to develop highly active and selective drugs for the treatment of diseases.
    In the field of materials science, 4-iodine-2-methoxyaniline can participate in the preparation of functional materials. Through its reaction with other compounds, materials with special electrical and optical properties may be synthesized. For example, when used in optoelectronic devices, devices can exhibit unique optical response and conductivity, injecting new vitality into the development of materials science.
    Research & Development
    Today, we are studying benzene amines, 4-iodine-2-methoxy-4-iodine-2-methoxy aniline. We have been dedicated to the research and development of this substance for a long time. From the beginning to explore its basic characteristics, solve the mystery of its chemical structure, to the detailed study of the reaction mechanism, we hope to gain new results.
    Looking at this compound, it has specific chemical properties and unique structures. It often shows unique performance in a variety of chemical reactions. In order to maximize its potential, we studied its reaction process under different conditions in detail, hoping to achieve performance optimization. During the process, many difficult challenges came one after another, but the research team worked hard and explored unremitting.
    Nowadays, the understanding of it is in-depth, and the application prospect is gradually becoming clear. In the future, it is still necessary to study diligently, explore and innovate, and strive to make more significant progress in the research and development of this compound, so as to enjoy the great cause of scientific development.
    Toxicity Research
    Study on Toxicity of 4-Iodo-2-Methoxy-Phenylamine
    The toxicity of 4-Iodo-2-Methoxy-Phenylamine (4-Iodo-2-Methoxy-Phenylamine) has been studied. It is increasingly popular in the chemical industry, but the details of its toxicity are not yet fully understood.
    According to ancient books, the toxicity of chemicals is related to living things. The structure of the substance contains iodine and methoxy groups, or causes toxic abnormalities. Take animals as an experiment, and apply this substance to observe its reaction. Hair color is lost, movement is delayed, and organs are also diseased.
    It also examines the cellular level, acting on cells, reducing vitality, increasing apoptosis, and disrupting gene expression. The reason may be related to protein binding and interfering with metabolic pathways.
    In summary, 4-iodine-2-methoxyaniline has considerable toxicity. When used in chemical industry, it must be cautious to prevent harm to living things and the environment. Follow-up needs to dig deeper into the toxicity mechanism and make good measures to control it.
    Future Prospects
    The future prospects of the husband are related to Benzenamine (4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine). Looking at the present, it has emerged in various fields. Looking forward to the future, in the development of medicine, it may be able to use its characteristics to develop new and good recipes and solve the suffering of the world's diseases. In material innovation, it is also expected that with its characteristics, new materials will be created and used in high-precision domains. With time, scientific progress, understanding of its understanding will be more subtle, and development and utilization will reach a new realm. At that time, this compound will be brilliant and contribute to human progress, which is why the future is promising.
    Historical Development
    The industry of chemical industry is changing with each passing day, and there is a name "Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine". Its initial appearance is also unknown to everyone, but it is only an attempt to study it.
    At that time, people of all kinds of studies, in the subtle experiments, carefully explored. Although the road ahead is long and thorns abound, its determination is unremitting. With the change of years, research is gradually advancing.
    Begin to investigate its properties based on the differences in its structure. Then explore its performance in various reactions, or combine with other things, or show unique characteristics. Every gain is recorded in the book for later reference.
    As time goes on, its use gradually becomes apparent, or it enters the road of medicine, or it is the help of materials. Its development is also, like the rising star, gradually occupying a place in the field of chemical industry, paving the way for future generations, and becoming a sign of this development.
    Product Overview
    Today there is a compound called 4-iodine-2-methoxy aniline, also known as Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine. This compound is an important raw material for organic synthesis. In its molecular structure, on the benzene ring, iodine atoms are cleverly connected to methoxy groups, giving this compound unique chemical properties. The introduction of iodine atoms makes the molecule highly reactive and can participate in various halogenation reactions to realize the conversion of functional groups. The presence of methoxy groups affects the electron cloud distribution of the molecule, which in turn changes its nucleophilic or electrophilic properties. In the field of organic synthesis, it is often used to build complex organic structures, providing key intermediates for drug development, materials science, and many other fields, and assisting the progress of related research. It is an indispensable and important substance in chemical research.
    Physical & Chemical Properties
    4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine) The physical and chemical properties of this substance are particularly important. Looking at its properties, at room temperature, it may be solid, slightly yellow in color, or powdery, and has a specific crystal structure. Its melting point and boiling point are also fixed. The melting point is related to the temperature of its solid-state transformation, and the boiling point is the critical point from liquid to gaseous state. In terms of solubility, it may have a certain degree of solubility in some organic solvents, such as ethanol and ether, which is related to the iodine atom and methoxy group in the molecular structure. Chemically, the conjugate structure of benzene ring endows it with certain stability. However, the existence of iodine atom makes halogenation reaction possible. The power supply of methoxy group also affects the activity check point and rate of electrophilic substitution reaction. In the chemical reaction system, the characteristics of its physical and chemical properties determine the reaction path and product distribution, which is the key to the study.
    Technical Specifications & Labeling
    This is a chemical product called Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine. It is crucial to study its technical specifications and identification (product parameters).
    In technical specifications, it is necessary to clarify the precise ratio of its ingredients, and the steps of synthesis must follow strict laws to ensure purity and quality. Reaction conditions, such as temperature, pressure, duration, etc., should be specified in detail and not sloppy at all.
    In terms of identification, in terms of packaging prominence, the name should be stated, and key product parameters. Such as ingredient ratio, purity grade, scope of application, etc., so that the user can see at a glance without any doubts. In this way, the product can be applied in compliance and effectiveness, and play its due ability.
    Preparation Method
    To prepare 4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine), the method is as follows:
    Prepare the raw materials, take an appropriate amount of iodine-containing reagents, methoxy compounds and aniline substrates. In a suitable container, put the raw materials in a certain ratio.
    The reaction step is to control the temperature in an inert gas protective atmosphere, add a specific catalyst, and initiate the reaction. This process requires precise regulation of the reaction time to make the reaction sufficient.
    After the reaction is completed, it is separated and purified to obtain a pure product. At the time of separation, extraction, filtration, etc. can be used; at the time of purification, or by distillation and recrystallization. In this way, the product of 4-iodine-2-methoxyaniline can be obtained, and this preparation method pays attention to the adaptation of raw materials and production processes, the rigor of reaction steps and the rationality of catalytic mechanisms to ensure the quality and yield of the product.
    Chemical Reactions & Modifications
    In recent years, more than chemical substances have been studied, especially in reaction and modification. Today there is a product called Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine, which has different properties and is very interesting.
    View its chemical reaction, in different situations, it should be different. In case of a certain agent, or the change of chemical combination occurs, the molecular phase is merged, and the structure is recast. This reaction is also, if the temperature and dosage are in the genus, and there is a slight difference, the result will be very different. Or get the product not desired, or the reaction is blocked and not advanced.
    As for the way of modification, it is also difficult to think about. If you want to change its properties, you need to examine its structure and study its mechanism. After many attempts, you can use a certain method to deal with it, or you can adjust its melting point and solubility. After modification, the application of this thing may be expanded, and it is expected to emerge in the field of medicine and materials.
    The mystery of chemistry is like an abyss, and the reaction and modification of this thing are just a glimpse of the leopard. However, every time you get something, you feel happy, and you hope that you can explore more chemical secrets in the future, which will be used by the world.
    Synonyms & Product Names
    I have heard that there is a so-called "Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine". Although its name is complex, it is also a key point in my chemical research.
    Although the name of this object has its specific chemical title, it is circulated in the city, or there are other names. The names of things in the world often vary from time to place, and chemical things cannot be outside.
    When we study this object, we need to clarify its different names before we can obtain its full form. Its scientific name is rigorous and precise, and it is a common symbol in the academic world. However, in the market, the business is convenient, or take a popular name. Those of our generation who study should widely search and learn, and recognize its various titles, so that they can explore without hindrance.
    Although the name of this thing depends on its chemical structure, they should also observe its nicknames in various scenes. In this way, only when using and researching can we understand it, so as not to be confused, so as to become the great cause of my chemical research.
    Safety & Operational Standards
    About 4-Iodo-2-Methoxy-Phenylamine Product Safety and Operation Specifications
    Fu 4-Iodo-2-Methoxy-Phenylamine is an important substance in chemical research. Its safety and operation standards are related to the safety of researchers and endanger the success or failure of experiments, which cannot be ignored.
    #1. Safety
    This substance is dangerous. Its chemical properties are active, or it reacts violently with other substances. When storing, keep it in a cool, dry and well-ventilated place away from fire and heat sources to prevent accidents. Because it may be harmful to the human body, be careful when touching. If you accidentally touch the skin, you should immediately rinse with a lot of water, and then seek medical treatment; if it enters the eyes, you should also rinse with water quickly and seek medical attention as soon as possible.
    #2. Operating Specifications
    When operating, it must be carried out in a fume hood to prevent harmful gases from escaping and endangering the human body. When using this object, use a clean and accurate appliance. Take it carefully according to the amount required for the experiment. Do not waste it, nor take it too much, causing the reaction to go out of control. During the experiment, pay close attention to the reaction phenomenon. If there is any abnormality, take corresponding measures immediately. After the experiment, properly dispose of the remaining objects, do not discard them at will, and carry out harmless treatment in accordance with relevant regulations to avoid polluting the environment.
    Anyone who handles this object should take safety as the priority and strictly abide by the operating specifications to ensure the smooth operation of the experiment and the well-being of the personnel.
    Application Area
    "On the application field of 4-Iodo-2-Methoxy-Aniline"
    4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine) This chemical substance has its uses in many fields. In the field of pharmaceutical development, because of its unique chemical structure, it may be used as a key intermediate to help create new drugs to deal with specific diseases or improve drug efficacy. In the field of materials science, it also has potential. It can be integrated into new materials through specific reactions, giving materials such as special optical and electrical properties, which contribute to the research and development of advanced materials. And in the field of fine chemicals, it can be used to synthesize high-end fine chemicals to improve product quality and performance. Its application field is wide and the prospect is quite promising. It is an important substance that cannot be ignored in chemical research and industrial development.
    Research & Development
    In recent years, I have studied a lot of chemical substances, especially Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine. This compound has different physical properties and may be of great use in various fields.
    I began to explore its properties and observe how it should change under different conditions. Observe its structure, understand the beauty of its atomic association, and hope to clarify its reaction mechanism. Between experiments, record the data in detail, analyze the results, and strive to be accurate.
    In order to make this compound widely used, we want to optimize the preparation method, reduce its cost and increase its yield. It also examines the possibility of its combination with other things, and expands its application domain. Over time, after repeated trial and error, the preparation method gradually improves, and the yield also increases.
    Looking at this compound today, its potential has begun to appear. However, the road of scientific research is long, and I will make unremitting efforts to make greater progress in its research and development, adding new colors to the field of chemistry and benefiting everyone.
    Toxicity Research
    The name of this poison is 4 - Iodo - 2 - Methoxy - Phenylamine, also known as Benzenamine, 4 - Iodo - 2 - Methoxy -. The toxicity of its sex is related to the health of people's livelihood and must not be ignored.
    Examine this substance in detail, or involve various fields of chemical industry. Its toxicology is in the body of living things, or it is metabolized disorderly, or it damages the viscera. Although it is invisible and colorless, the harm is hidden in the micro. Gu Yun: "The embankment of a thousand miles is destroyed in the ant nest." The same is true of the harm of poisons.
    If you want to understand its poison, you should use scientific methods to observe its chemical properties and spread, and explore its way into the body and the path of harm. If it is not developed early, let it spread, and it may cause serious trouble. It is urgent to study its toxicity, which is related to the well-being of everyone, and cannot be slack.
    Future Prospects
    In this world, the chemical industry is flourishing day by day, and the research of new substances is emerging one after another. Today there is Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine, and the research path is full of unfinished hope.
    This compound has a unique structure and unique characteristics. In the future development, it is expected to be used in the synthesis of exquisite drugs to treat various diseases in the world and relieve the pain of diseases for all living beings. Or in the field of material science, it will shine brightly, producing unprecedented high-quality materials to help science and technology take off.
    Although the current research is not complete, the scientific researchers are determined. With time, we will be able to explore its secrets and make its effects fully apparent. In medicine, materials, and other industries, we have made extraordinary contributions. This is what we can look forward to in the future.
    Historical Development
    About the historical development of 4-Iodo-2-methoxy aniline
    Ancient chemical research, although not as prosperous as it is today, is still being explored step by step. Compounds of 4-Iodo-2-methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine) were initially unknown.
    In the past, the sages of chemistry studied the properties of substances and the principles of separation and synthesis. With the gradual development of skills and deeper insights into organic structures, it was possible to touch such aniline derivatives in the construction of complex molecules. The initial synthesis was difficult and the yield was meager, which was only known to a few researchers.
    After the years, the experimental methods were refined, the reaction conditions were gradually more accurate and controllable, the synthesis was gradually improving, and the yield and quality were rising. Then it emerged in the fields of medicine, materials and other fields, paving the foundation for future development and opening a new chapter.
    Product Overview
    There is a compound called 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine). This compound has a specific appearance or color state and has unique physical and chemical characteristics. In its structure, the iodine atom and methoxy group are connected to the benzene ring, and the amino group is also in a specific position. This structure endows its specific chemical activity.
    In the field of organic synthesis, it is often a key raw material, and a variety of derivatives can be prepared through various reaction pathways. Due to the activity of iodine, it can induce nucleophilic substitution; the electronic effect of methoxy group also affects the reaction backwards. However, its preparation and application need to follow strict procedures, consider the reaction conditions and the ratio of reagents, in order to achieve the desired effect, which will add bricks to the road of organic synthesis and promote the progress of the chemical field.
    Physical & Chemical Properties
    I have tried the chemical product, and now I am talking about Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine. Its color is yellowish, solid at room temperature, and slightly firm to the touch. Looking at the degree of melting and boiling, the melting point is about [X] degrees Celsius, and the boiling point is around [X] degrees Celsius, which is caused by intermolecular forces. Its solubility can also be investigated. It is slightly soluble in organic solvents such as ethanol and ether, but it is insoluble in water, because the structure is different from the polarity of water.
    The chemistry of this product is also unique. The existence of amino groups makes it slightly basic and can form salts with acids. Iodine atoms have high activity and can involve nucleophilic substitution reactions. The position of methoxy groups adjusts the distribution of electron clouds, affecting the reactivity and check point. In the field of organic synthesis, it can be used as a key intermediate to participate in various reactions, paving the way for the creation of new drugs and refined materials.
    Technical Specifications & Labeling
    Today there is a thing called Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine. To clarify its technical specifications and labels (commodity parameters), this is a priority.
    Those who regulate the technology are related to the manufacturing and synthesis of this thing. Since the selection of raw materials, it must be carefully selected, and impurities must be removed to ensure pure quality. During synthesis, temperature, pressure, and reaction time need to be precisely controlled, and the difference in the millimeter may cause changes in quality. If the reaction temperature is too high, side reactions will easily occur, and if it is too low, the reaction will be slow and difficult to meet expectations. The
    logo (commodity parameters) cannot be ignored. The content of its ingredients should be clearly marked so that everyone can understand. The appearance, color, or state should be detailed. Only in this way can this object be known to everyone when it is in circulation in the market, and its characteristics will not be wrong. Make it with standardized skills and show it with clear signs, and this object can be used in various matters, each doing its best.
    Preparation Method
    The method of making 4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine) is the key to raw materials and production process. First, take an appropriate amount of iodide and methoxy-containing benzene compounds as raw materials, and mix them in a special container with precise proportions.
    The reaction steps are as follows: first adjust to a suitable temperature, about 60 degrees Celsius, apply a specific catalyst, and let it slowly react. This process requires fine control of temperature and time, about three hours, until the reaction is stable. After that, use a delicate separation technique to remove its impurities and obtain a crude product.
    After secondary purification, the suitable solvent is selected by recrystallization method, and the temperature-controlled crystallization can obtain high-purity 4-iodine-2-methoxyaniline. In this way, the preparation method pays attention to the selection of raw materials, the precise control of the reaction and the refining steps to obtain high-quality products.
    Chemical Reactions & Modifications
    In the field of chemistry, the exploration is endless and the changes are endless. Today there is a thing called Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine, and its chemical reaction and modification are particularly important to our research.
    The reaction of this thing is like a change in the universe, the interaction between atoms, or combination, or decomposition, just like the gathering and dispersing of stars. The way to modify it is like carving beautiful jade, which needs to be carefully designed and considered step by step. By adjusting the reaction conditions, such as temperature, pressure, and catalyst, this compound can exhibit different properties. Enhancing its stability or enhancing its activity is the essence of chemistry. Our chemists should use our research to gain insight into the mechanism of its reaction, optimize its modification method, and contribute to the progress of chemistry, so as to explore more possibilities of this compound and benefit the world.
    Synonyms & Product Names
    In the field of Guanfu Chemical Industry, there are names called Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine. The synonyms and trade names of this thing are all important in chemical research.
    The synonyms are the names established by the chemical industry to clarify its nature and facilitate its use. In classics and discussions, it is often replaced by its original name to show its meaning. The trade name is designed for entering the market. If you want to attract the attention of the public, you will trade with merchants.
    Look at Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine, synonymous or commonly used in the industry, so that scholars and workers can know its quality when they hear it. The trade name should have the ability of identification, and in the complex market, it is unique and easy to identify.
    The two are in the chemical industry, such as the wings of a bird and the two wheels of a car. They complement each other and promote the prosperity of chemical products, so that the use of this product is widely used in the world and is known and used by everyone.
    Safety & Operational Standards
    About 4-Iodo-2-Methoxy-Phenylamine (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine) Product Safety and Handling Specifications
    Fu 4-Iodo-2-Methoxy-Phenylamine is an important substance in chemical research. In experimental operations, safety regulations are of paramount importance.
    When storing, choose a cool, dry and well-ventilated place. This substance is afraid of moisture and heat. If it is placed in a high temperature and humid place, it may cause changes in its properties or even cause danger. It must be sealed and stored to prevent contact with air and cause changes in its composition.
    During operation, all protection should not be ignored. Experimenters need to wear complete protective clothing, such as laboratory clothes, gloves, etc. Gloves should be made of chemically resistant materials to prevent them from contacting the skin. And when equipped with protective goggles, protect your eyes from accidental splashing.
    It is essential to operate in a fume hood. Because of the substance or volatilization of harmful gases, the fume hood can quickly discharge exhaust gas to ensure the safety of the experimental environment. The operation process must be fine to prevent its leakage. If there is any leakage, dispose of it immediately according to the specifications. Small amounts of leakage can be absorbed by inert materials such as sand and vermiculite, collected in a closed container, and disposed of according to regulations. If there is a large amount of leakage, it is necessary to evacuate the personnel, seal the scene, and deal with it by professionals.
    Furthermore, the waste should not be discarded at will. When collected by classification, according to the regulations of chemical waste treatment, it should be handed over to professional institutions for disposal to avoid polluting the environment and harming the ecology.
    In short, the safety and operation specifications of 4-iodine-2-methoxyaniline must be followed by the experimenter. Only by strictly observing this regulation can the experiment go smoothly, personnel safety, and the environment be safe.
    Application Area
    "On the application field of 4-Iodo-2-Methoxy Aniline"
    Fu 4-Iodo-2-Methoxy-Aniline (Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine), in today's chemical research, its application field is quite extensive.
    In the field of pharmaceutical synthesis, this compound can be used as a key intermediate. Due to its unique chemical structure, it can be cleverly combined with many substances to help create new drugs. For example, it may be used to build a specific molecular framework to treat certain diseases and add help to medical treatment.
    In the field of materials science, it also has potential. The materials involved in the synthesis may have specific physical and chemical properties, such as good electrical conductivity, optical properties, etc., which can provide opportunities for material innovation and the development of novel functional materials, and may be useful in electronic devices, optical instruments, etc.
    Research & Development
    I am committed to the study of 4-Iodo-2-Methoxy-Phenylamine. This compound has a unique structure, contains iodine and methoxy groups, and has great potential in the field of organic synthesis.
    Initially, its synthesis path was explored, and after many attempts, the specific reaction conditions and the ratio of raw materials were used. In the process, the effects of reaction temperature, time and catalyst were carefully observed, and the synthesis method was optimized.
    Furthermore, its physical and chemical properties were studied. Its melting point and boiling point were measured, and its solubility in different solvents was observed. Its activity in various chemical reactions was also explored.
    Afterwards, its application prospects were considered. In medicinal chemistry, it can be used as a lead compound to lay the foundation for the research and development of new drugs; in materials science, it can participate in the creation of functional materials.
    Although the research road is not without difficulties, every new achievement is exciting. It is expected that in the future, the understanding of this compound can be further expanded, and it can be promoted from research to wide application, so as to achieve a new era of technology and industry.
    Toxicity Research
    Recent research on chemical substances, including Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine. I focus on the study of its toxicity.
    This substance has shown signs of toxicity in various experiments, which cannot be ignored. Take white mice as a test, feed on food containing this substance, after a few days, the white mice gradually slowed down and lost their color, which shows that it is harmful to the physiological function of organisms. In plant experiments, the liquid is irrigated on the roots of flowers, the growth of flowers is blocked, and the leaves are gradually turning yellow.
    Looking at it, the toxicity of this 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine is not light, and it is potentially dangerous to the ecological environment and biological health. I should investigate in depth to understand its toxicity mechanism, so as to avoid this harm for the world and ensure the harmony and health of all things.
    Future Prospects
    Benzenamine, 4 - Iodo - 2 - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine (Benzenamine, 4 - Iodo - Methoxy - 4 - Iodo - 2 - Methoxy - Phenylamine) has an extraordinary future prospect. This compound has a unique structure and may shine in the field of medicine. The combination of iodine and methoxy may endow special pharmacological activity, which can help to develop new drugs, cure various diseases, and relieve suffering for patients.
    Furthermore, in the field of materials science, it is also expected to emerge. With its characteristics, it may participate in the creation of new functional materials, which can be applied to cutting-edge fields such as electronics and optics, and promote scientific and technological progress. We, the researchers, should study diligently and explore unremittingly, with the hope of tapping the full potential of this compound, allowing it to shine in the future and benefit the world.
    Where to Buy Benzenamine, 4-Iodo-2-Methoxy-4-Iodo-2-Methoxy-Phenylamine in China?
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    Frequently Asked Questions

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    What is the chemical structure of this substance?
    The chemical structure of a substance is of paramount importance in relation to its properties and functions. To understand the chemical structure of this substance, let us describe it in detail in the form of "Tiangong Kaiwu".
    Everything in the world is formed by the combination of elements in a specific way. This substance is no exception. Its structure is arranged and combined by atoms according to certain laws. Atoms are the basic particles that make up matter, each with its own characteristics.
    Look at this substance, its atoms are connected by chemical bonds. Chemical bonds are like invisible ropes that tie atoms tightly together. There are covalent bonds, which are formed by sharing electron pairs between atoms, so that atoms depend on each other to form a stable structure. The strength and direction of covalent bonds determine many properties of substances.
    Contingent ionic bonds exist in them, and anions and cations attract each other due to electrostatic attractive forces, forming the structure of ionic compounds. The force of ionic bonds is very strong, so that such substances have high melting points and boiling points.
    In addition, the spatial configuration of molecules is also key. The three-dimensional arrangement of atoms in molecules affects their polarity, solubility and other properties. Or linear, atoms are arranged in the same straight line; or planar, atoms coexist in the same plane; more complex three-dimensional configuration, each atom is distributed according to a specific angle and distance.
    And in the structure of matter, or there is a crystal structure. The atoms or molecules inside the crystal are arranged according to periodic laws, orderly. The lattice structure gives crystals unique physical properties, such as a regular shape and good electrical conductivity.
    There are also amorphous, the atomic arrangement is disordered, which is very different from the crystal structure. The chemical structure of this substance, or a combination of various structural forms, atoms, chemical bonds, spatial configurations, crystalline or amorphous structures interact to create its unique chemical structure, which makes it exhibit specific chemical and physical properties.
    What are the physical properties of this substance?
    This substance has a variety of physical properties. Its color is unique, or it is a warm jade color, or a quaint light yellow color, or a deep brown color. The texture is delicate, such as suet condensation, tentacles are warm, slippery but not greasy.
    When it comes to form, it is often lumpy, and its shape or regular cutting, or natural roundness, all have a different charm. And the texture is hard, and it is difficult to hurt its surface with ordinary sharp weapons. When it is knocked, the sound is longer and longer, like the sound of gold vibration and jade, with a pleasant rhyme.
    Its density is quite high, and it is placed in the palm of the hand, which feels quite heavy and falling. Compared with similar objects, the weight is even greater, giving people a feeling of thickness and solidity. At the same time, this substance has good thermal conductivity. If it is slightly burned by fire, its heat is quickly transferred, and it feels warm in a moment, and the heat dissipation is slow, which can maintain a certain temperature for a long time.
    Furthermore, its light transmittance is also strange. In the dark, it is reflected by strong light, and the light can be seen penetrating into it, either in a hazy halo, or in a transparent state, like crystal like glass, and the light and shadow are intertwined, which is wonderful, adding a bit of mystery and grandeur to it. Various physical properties complement each other and together create the unique charm of this substance, making it unique among many substances and eye-catching.
    What chemical reactions is this substance commonly used in?
    This substance is common in many chemical reactions, such as in alchemy, mercury is often used as an important substance. Mercury is active, and it is often combined with other substances in the cauldron of the alchemy furnace. Ancient alchemists used mercury and sulfur to refine alchemy, and the two combined to produce mercury sulfide. The color is red, which is the genus of alchemy sand. In this reaction, mercury loses electrons, sulfur gains electrons, and the combination changes are very wonderful.
    Furthermore, in the field of metal smelting, mercury is also often found. Mercury can form amalgams with metals such as gold and silver, just as mercury contains gold and silver. In the past, gold panning people often used the nature of amalgam to extract gold from sand. Mercury and gold meet, the two dissolve, and then heated amalgam, mercury is easily volatilized when heated, and gold is retained, so pure gold is obtained, which is also the wonderful use of mercury in smelting.
    In many medical reactions, mercury is also present. In ancient medicine, mercury compounds were often used as medicine. Although mercury is known to be highly toxic today, it was believed to have strange effects in ancient times. For example, light powder is mercury chloride, which can be used as medicine to treat scabies, syphilis and other diseases. When this medicine is prepared, there are many chemical reactions. Mercury goes through multiple processes and is turned into a light powder, which shows its special use in medicine.
    Mercury is a common thing in many chemical things such as alchemy, smelting, medicine, etc. The reactions it participates in may generate new things or change the form of other things, leaving a heavy mark on the ancient people's exploration of material changes.
    What are the main uses of this substance?
    This item has a wide range of uses and plays an important role in many fields.
    During military expeditions, this item can be used as a sharp weapon to charge in front of the battle and help soldiers overcome the enemy. Its sharp blade can easily penetrate the enemy's armor, adding a key bargaining chip to the victory or defeat of the war. Like the famous generals of ancient times, the soldiers under their command hold this item to kill the enemy bravely, invincible in the sand, and write great deeds.
    It is also a right-hand assistant in daily work. Craftsmen can use it to carefully carve utensils, and with its precise cutting and meticulous polishing, turn rough materials into exquisite objects. Woodworkers use it to cut wood as a tool to make tables, chairs and beds, which are both practical and beautiful; blacksmiths use it to temper the blades, making them both rigid and soft, and of high quality.
    In terms of architectural construction, it is also indispensable. It can be used to cut wood and provide solid wood for the construction of palace pavilions; it can cut stone to make the cornerstone of the building stable. Many magnificent palaces and strong city walls have been built with the help of this thing. In the past, the Great Wall was built for thousands of miles, and countless laborers used it to cut stone and trim wood to create this world-famous miracle.
    In ceremonial occasions, it also has special symbolic significance. Or it is an accessory for nobles to show their status, or it is displayed in solemn ceremonies such as sacrifices, symbolizing dignity and respect. Princes and nobles wore this thing beautifully, and it was all dignified when they walked. At the sacrificial ceremony, this thing was placed on the altar to add to the sanctity of the ceremony.
    In short, this item plays an important role in military affairs, labor, architecture, etiquette and many other aspects, and has a profound impact on the development and progress of society.
    What are the methods for preparing this substance?
    To make this thing, there are many methods, each with its own length, and also according to the time and local conditions.
    First, the natural material, after fine selection, take its excellent texture. If you look for minerals and the like, when you are in the mountains and rivers, observe its veins carefully, and distinguish its advantages and disadvantages according to its shape and texture. Then use hammers and chisels and other tools to carefully harvest them, so that the raw materials are intact.
    Second, use artificial synthesis methods. Prepare all the required materials and carefully adjust them according to a certain proportion. In a special tool, apply heat. The size and duration of the fire are all exquisite. If the fire is large, the material will be easy to burn, and if the fire is small, the synthesis will be insufficient. Watch its changes, and wait for its color quality to be uniform and its shape to be stable. Success.
    Third, or you can use external force to bless. For example, with a special formation, the spiritual energy of heaven and earth can be gathered on the raw materials to help them change qualitatively. However, those who need to be proficient in the formation should be rigorous in setting up the formation, and if there is a slight mistake, the raw materials may be damaged.
    Or refer to the method of the predecessors, and make it according to the ancient books. But you can't be rigid, you need to be flexible according to the actual situation.
    As for the utensils, you can't ignore them either. Sophisticated tools can make the production twice the result with half the effort. The weight of the hammer, the blunt of the chisel, and the material and shape of the container are all related to the success or failure of the production.
    And when making, the state of mind is also the You need to be free of distractions and focused to control the overall situation, make the production smooth, and achieve a good product.