2 Amino 3 5 Diiodo 6 Methylpyridine
pyridine pyrrole pyrazine piperidine piperazine

2-AMINO-3,5-DIIODO-6-METHYLPYRIDINE

    Specifications

    HS Code

    676489

    Chemical Formula C6H7I2N
    Molecular Weight 330.934
    Solubility In Water Low solubility, as it is an organic heterocyclic compound with non - polar groups
    Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, chloroform due to its organic nature
    Stability Stable under normal conditions, but may decompose on exposure to strong oxidizing agents or high heat

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    General Information
    Where to Buy 2-AMINO-3,5-DIIODO-6-METHYLPYRIDINE in China?
    As a trusted 2-AMINO-3,5-DIIODO-6-METHYLPYRIDINE manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading 2-AMINO-3,5-DIIODO-6-METHYLPYRIDINE supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    2-AMINO-3, what are the main application fields of 5-DIIODO-6-METHYLPYRIDINE
    2-Amino-3,5-diiodine-6-methylpyridine is useful in various fields. In the field of medicine, it is a key intermediate for the synthesis of special drugs. Because of its unique chemical structure, it can interact with specific biomolecules, so in drug development, it can help create new drugs for specific diseases, such as anti-tumor, antiviral drugs, etc.
    In the field of materials science, it also has important functions. It can be used as a cornerstone for the construction of new functional materials. Through chemical reactions, it can be introduced into polymer polymers to endow materials with unique optical and electrical properties, such as for the preparation of materials with special luminescent properties, which is expected to be applied to optoelectronic display devices.
    Furthermore, in the field of organic synthesis chemistry, this compound is an important starting material for the synthesis of more complex organic molecules. Due to the existence of iodine atoms, amino groups and methyl groups, a variety of chemical reactions can occur, such as coupling reactions, substitution reactions, etc., which expand the structural complexity of organic molecules and provide the possibility for the synthesis of novel organic compounds, which in turn promotes the development of organic synthesis chemistry and has potential applications in the preparation of fine chemical products. In short, 2-amino-3,5-diiodine-6-methylpyridine is an indispensable and important substance in many fields such as medicine, materials and organic synthesis, and its application prospects are quite broad.
    What is the synthesis method of 2-AMINO-3, 5-DIIODO-6-METHYLPYRIDINE
    The synthesis method of 2-amino-3,5-diiodine-6-methylpyridine is detailed as follows.
    To prepare this compound, 6-methylpyridine can be used as the starting material. Because the pyridine ring has certain stability and reactivity, it can lay the foundation for subsequent reactions. With suitable halogenation reagents, such as iodine and specific catalysts and reaction conditions, the 3 and 5 positions of the pyridine ring are halogenated to introduce iodine atoms. This halogenation step requires precise control of the reaction temperature, time and reagent dosage, because the degree of halogenation and position selectivity are extremely critical. < Br >
    Wait for 3,5-diiodine-6-methylpyridine to obtain it, and then carry out the amination reaction. Suitable amination reagents, such as compounds containing amino groups, can be selected and carried out in appropriate solvents and reaction environments. In this process, factors such as the acidity and alkalinity of the reaction system and temperature changes should be considered to promote the smooth replacement of amino groups in suitable positions on the pyridine ring to generate 2-amino-3,5-diiodine-6-methylpyridine.
    After the reaction is completed, the product needs to be separated and purified. Commonly used methods include column chromatography, recrystallization, etc. Column chromatography can achieve effective separation according to the polarity difference between the product and the impurity; recrystallization can achieve the purpose of purification by the different solubility of the product and the impurity in the solvent at different temperatures. After these steps, a relatively pure 2-amino-3,5-diiodine-6-methylpyridine can be obtained.
    2-AMINO-3, what are the physical and chemical properties of 5-DIIODO-6-METHYLPYRIDINE
    2-Amino-3,5-diiodine-6-methylpyridine, this physical property belongs to the field of organic compounds. Looking at its chemical structure, it is based on a pyridine ring, and there are amino groups, iodine atoms and methyl groups connected at specific positions on the ring.
    In terms of physical properties, at room temperature, it is mostly in a solid state, and the specific appearance may be a crystalline powder, which is caused by intermolecular forces. Its melting point is related to the degree of molecular accumulation and interaction, or it melts within a certain temperature range to facilitate temperature control in related experimental operations.
    When it comes to chemical properties, amino groups are basic and can be neutralized with acids. Under specific conditions, they can participate in reactions such as nucleophilic substitution. Because there are lone pairs of electrons on nitrogen atoms, they can be used as nucleophilic reagents. The activity of diiodine atoms cannot be ignored. The electronegativity of iodine atoms is large, which changes the electron cloud density of ortho-carbon atoms, which is conducive to the attack of electrophilic reagents, or halogenated hydrocarbons can occur. Methyl groups are the power supply groups, which affect the electron cloud distribution of pyridine rings, thereby changing the reaction activity of the entire molecule. In organic synthesis, these properties can be used for structural modification and derivatization to obtain compounds with specific functions.
    What is the market price of 2-AMINO-3, 5-DIIODO-6-METHYLPYRIDINE?
    2-Amino-3,5-diiodine-6-methylpyridine, the price of this product in the market is quite difficult to determine. The price of this product often varies due to various factors, such as the supply and demand of the market, the amount of production, the quality of the quality, and the difficulty of making it.
    Looking at the previous "Tiangong Kaiwu", the price of everything is related to all feelings. In today's world, if you want to find the exact price of this product, you must carefully study the state of the city. In the market of chemical raw materials, the price often fluctuates due to different seasons.
    If the market demands more and the supply is less, the price will rise; on the contrary, if the supply exceeds the demand, the price may fall. And its production process, if it requires complicated work and rare materials, the price should also be high. And those with excellent quality are often higher than those who are crude.
    Generally speaking, the price of today's market is between hundreds and thousands of yuan per kilogram. However, this is only a guess. If you want to know the exact price, you need to consult the chemical raw material supplier or explore a special trading platform to find out.
    2-AMINO-3, 5-DIIODO-6-METHYLPYRIDINE what to pay attention to when storing and transporting
    2-Amino-3,5-diiodine-6-methylpyridine is an organic compound. When storing and transporting, it is necessary to pay much attention to ensure its quality and safety.
    First, storage temperature is the key. This compound should usually be stored in a cool place, away from heat sources and open flames. Due to high temperature, it may decompose and react, which will affect the quality. If stored in a hot sun or high temperature environment, its chemical structure may be damaged, and its efficacy or reactivity will also change.
    Second, humidity control cannot be ignored. It needs to be stored in a dry place to avoid moisture. Because of its hygroscopicity, it may cause agglomeration after hygroscopicity, or even cause chemical reactions, resulting in reduced purity. If placed in a humid environment, moisture may interact with compounds and cause them to deteriorate.
    Third, the choice of storage container is very important. A well-sealed container should be selected to prevent contact with air. Oxygen, carbon dioxide and other components in the air may react with compounds. When storing in glass bottles or plastic bottles, the mouth of the bottle must be tightly sealed, and the bottle material should be compatible with the compound and do not react.
    Fourth, when transporting, ensure that the packaging is stable. Appropriate packaging materials should be selected to avoid package damage caused by shock and collision. If wrapped in foam, sponge and other cushioning materials, ensure safety during transportation.
    Fifth, it is necessary to strictly follow relevant regulations and standards. Whether it is storage or transportation, it must comply with the regulations on chemical management, and must not operate illegally to avoid safety accidents.