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Benzene, 2-Bromo-1-Fluoro-3-Iodo-

Benzene, 2-Bromo-1-Fluoro-3-Iodo-

Hongda Chemical

    Specifications

    HS Code

    117758

    Chemical Formula C6H3BrFI
    Appearance Unknown solid or liquid
    Boiling Point Unknown
    Melting Point Unknown
    Density Unknown
    Solubility In Water Low (non - polar molecule)
    Vapor Pressure Unknown
    Flash Point Unknown
    Polarity Polar due to halogen atoms
    Stability Can be reactive due to halogens

    As an accredited Benzene, 2-Bromo-1-Fluoro-3-Iodo- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100g of 2 - bromo - 1 - fluoro - 3 - iodo - benzene in sealed, labeled chemical container.
    Storage Store "Benzene, 2 - bromo - 1 - fluoro - 3 - iodo -" in a cool, well - ventilated area away from heat, flames, and oxidizing agents. Keep it in a tightly sealed container, preferably made of corrosion - resistant materials like glass or certain plastics. Ensure storage is in a dedicated chemical storage facility, segregated from incompatible substances to prevent potential reactions.
    Shipping Benzene, 2 - bromo - 1 - fluoro - 3 - iodo - should be shipped in well - sealed, corrosion - resistant containers. Ensure compliance with hazardous chemical shipping regulations due to its potentially harmful nature. Label clearly for proper handling during transit.
    Free Quote

    Competitive Benzene, 2-Bromo-1-Fluoro-3-Iodo- prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615365186327 or mail to info@alchemist-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: info@alchemist-chem.com

    Benzene, 2-Bromo-1-Fluoro-3-Iodo- Benzene, 2-Bromo-1-Fluoro-3-Iodo-
    General Information
    Historical Development
    In the field of chemistry, there is a name called "Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo -". Tracing its historical evolution, chemists in the past worked tirelessly on the road to exploring the mysteries of matter. At that time, the instruments were not as sophisticated as they are today, and the research was mostly based on keen observation and ingenious conception.
    At the beginning, the exploration of halogenated aromatics was only an ignorant preliminary exploration. Over the years, many talents have devoted themselves to it and worked hard on the reaction conditions and synthesis paths. After repeated experiments, the synthesis method was gradually understood, from the initial difficult attempts to the subsequent improvement of the process. The birth of this substance is the result of the efforts of chemists of all dynasties, just like the accumulation of a long river, it has finally become what it is today, shining a unique light in the field of chemical research.
    Product Overview
    About 2-Bromo-1-fluoro-3-iodobenzene
    There is a thing called "Benzene, 2-Bromo-1-Fluoro-3-Iodo -", that is, 2-bromo-1-fluoro-3-iodobenzene. This is an organic compound whose molecular structure is based on the benzene ring, and there are bromine, fluorine, and iodine atoms in specific positions above the benzene ring.
    Bromine, one of the halogen elements, has active chemical properties; fluorine is particularly active and often plays a unique role in chemical reactions; iodine is also a member of the halogen group, giving the compound special chemical properties. The three are co-attached to the benzene ring, so that 2-bromo-1-fluoro-3-iodobenzene has unique reactivity and physical properties. It may be used in organic synthesis, as a key raw material for the preparation of other types of complex organic molecules. Through various chemical reactions, a variety of useful compounds can be converted and derived, which may have important uses in various fields such as medicine and materials.
    Physical & Chemical Properties
    2-Bromo-1-fluoro-3-iodobenzene is one of the organic compounds. Its physical and chemical properties are particularly important.
    Looking at its physical properties, at room temperature, this compound may be in a liquid state with a specific color state. Its boiling point is related to the intermolecular force. Due to the introduction of bromine, fluorine and iodine atoms, the intermolecular action is different from that of benzene, and the boiling point may change significantly.
    As for the chemical properties, the electron cloud density of the benzene ring is affected by the halogen atom. The electronegativity of bromine, fluorine and iodine varies, resulting in uneven distribution of the electron cloud of the benzene ring. This compound is prone to electrophilic substitution reaction, and the positioning effect of the halogen atom determines the reaction check point. The halogen atoms located in the adjacent position make the reaction more specific. And because of its halogen-containing atoms, it can participate in many organic synthesis reactions, and is a key intermediate for the preparation of complex organic molecules. It is widely used in the field of organic chemistry and has important value in drug synthesis and material preparation.
    Technical Specifications & Labeling
    "On the Technical Specification and Identification of 2-Bromo-1-Fluoro-3-Iodo-Benzene (Commodity Parameters) "
    Research on chemistry is essential for the analysis of substances. In order to clarify the technical specification and identification of Benzene, 2-Bromo-1-Fluoro-3-Iodo-this substance, its properties must be investigated in detail.
    Looking at its structure, bromine, fluorine and iodine atoms are attached to the benzene ring. This unique combination determines its materialization. The technical specification is related to the method of synthesis, the purity of raw materials, and the rule of reaction. It is necessary to control the temperature and select the agent to achieve high purity.
    The weight of the logo indicates the parameters of the product. Contains purity geometry, a number of impurities, and similar properties. This is all a must-know for researchers and users. According to the ancient law, the rules and knowledge of this thing are hoped to be a lesson for the industry. The research assistants are diligent and the users are correct, so as to achieve a great career in chemistry.
    Preparation Method
    Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo - is a product made today. Its raw materials and production process, reaction steps and catalytic mechanism are quite critical.
    To make this product, pure benzene is selected as the base material, supplemented by bromine, fluorine and iodine reagents. First, benzene and bromine are catalyzed by iron, and bromobenzene is obtained by electrophilic substitution. The steps are: bromine and iron bromide, bromine positive ions are introduced, and benzene ring electron cloud is attacked to form bromobenzene.
    Times, bromobenzene and fluorine reagents are applied to a specific solvent, heated at controlled temperature, and assisted by a metal catalyst, and halogen is exchanged to obtain fluorobromobenzene. This step requires precise temperature control and catalyst amount to ensure that the reaction goes forward.
    At the end, fluorobromobenzene and iodine reagents are stored in the alkali and phase transfer catalyst, and then replaced to obtain Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo -. Each step requires precise measurement of feed ratio, temperature control, impurity removal, and product purity and yield.
    Chemical Reactions & Modifications
    The chemical reaction and property change of bromine, fluorine and iodine substituted benzene are quite important in the study of bromine, fluorine and iodine. Looking at this compound, the three atoms of bromine, fluorine and iodine are attached to the benzene ring, and their chemical properties are very different from that of benzene.
    Its chemical reaction is also different. Due to the induction effect and conjugation effect of halogen atoms, the electron cloud density of the benzene ring changes. In the electrophilic substitution reaction, the halogen atom is an ortho-para-site locator, but the localization effect is different due to the difference between the electronegativity and the atomic radius. The electronegativity of bromine, fluorine and iodine decreases in turn, and the steric resistance increases in turn. Therefore, when the electrophilic reagent attacks To change its activity and response, or adjust the reaction conditions, such as temperature, pressure, catalyst; or introduce other groups, borrow the interaction between groups, and change the conductivity. After modification, derivatives with specific properties can be obtained, which are widely used in medicine and materials.
    Synonyms & Product Names
    Today, there is a thing called "Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo -". Its same trade name is also the important one we are exploring.
    This thing is in the field of chemistry, and it has its own specific properties. However, the world often calls it by different names, or convenience, or because of vulgarity. To understand its meaning, it is necessary to study the same trade name.
    Those who are the same are indicating different uses of the same concept. Or due to regional differences, or due to differences in schools, resulting in similar performance. And the trade name, the merchant sells this thing, with the intention of attracting attention, it is convenient.
    Explore the same brand name of "Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo -", which can help us better understand the characteristics, uses and status of this product in the market. Only by studying carefully and working with many parties can we get the whole picture, which is beneficial for both research and business use.
    Safety & Operational Standards
    About "2-Bromo-1-fluoro-3-iodobenzene" Product Safety and Operating Specifications
    "2-Bromo-1-fluoro-3-iodobenzene" is an important product in chemical research. It is related to safety and operating standards, and cannot be ignored.
    In terms of safety, the first protection is. This object has certain chemical activity, contact with the skin or cause irritation, and it is harmful to the eyes. Therefore, when handling, wear protective clothing, protective goggles and gloves to prevent accidental contamination. Its odor may also be harmful, and it is suitable to operate in a well-ventilated place. If conditions are available, use a fume hood to disperse harmful gases quickly and prevent them from entering the human body.
    In addition, storage is also exquisite. It must be placed in a cool, dry and ventilated place, away from fire and heat sources. Due to its chemical properties or reaction with other things, it should not be mixed with oxidizing agents, reducing agents, etc., to avoid causing disasters.
    As for the operating specifications, study the steps in detail before the experiment, and be familiar with the process. When measuring, use precise equipment and use it according to the specified amount, and do not increase or decrease at will. During the reaction process, pay close attention to the temperature, pressure and other conditions, and adjust according to the established parameters. There is a slight difference, or the reaction is abnormal.
    After the reaction is completed, caution is also required when handling the remaining materials. Do not dump at will, in accordance with relevant regulations and laboratory regulations, properly dispose of to prevent pollution of the environment.
    In short, the safety and operation specifications of "2-Bromo-1-Fluoro-3-Iodobenzene" are related to the safety of the researcher, as well as the success or failure of the experiment and the safety of the environment. We should strictly abide by the norms and dare not slack in the slightest, so that we can move forward smoothly in the process of chemical research.
    Application Area
    Today there is a thing called "Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo -", in the field of chemistry, its application field is quite wide.
    In the way of pharmaceutical research and development, this compound is often the key raw material. Because of its unique structure, it can help doctors create new drugs to fight various diseases. For example, in the research of some difficult diseases, it can be used as a basis, or a special agent can be developed to relieve the pain of patients.
    In the field of materials science, it is also important. With it as a starting material, through ingenious craftsmanship, materials with excellent performance can be obtained. Such materials may have special physical properties, such as excellent electrical conductivity, optical properties, etc., and can be used in many fields such as electronic equipment and optical instruments to promote the progress of science and technology.
    It can be seen that "Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo -" has unlimited potential in the application fields of medicine and materials. It is cherished by chemical researchers and will also contribute to the well-being of mankind and the development of science and technology.
    Research & Development
    In recent years, I have dedicated myself to the research of the organic compound "Benzene, 2 - Bromo - 1 - Fluoro - 3 - Iodo -". This substance has unique structures and strange properties, and has great potential in many fields.
    My initial investigation focused on its synthesis path. After repeated experiments, with specific halogenation reactions, carefully regulated reaction conditions, such as temperature and catalyst dosage, etc., this compound was finally obtained. However, the yield of synthesis still needs to be improved, which is the key to follow-up research.
    Talking about applications, it has emerged in materials science. After preliminary tests, the material made from this compound has shown excellent optical properties and is expected to be used in new optoelectronic devices. However, there are still challenges in stability and further optimization is required.
    Looking to the future, I will deeply study the method of improving its performance, optimize the synthesis process, and improve the yield. It is hoped that with unremitting efforts, this compound will be promoted from the laboratory to practical application, and contribute to the development of science and social progress.
    Toxicity Research
    Study on the toxicity of 2-bromo-1-fluoro-3-iodobenzene
    The chemical substance is related to people's livelihood and national plans, but its toxicity cannot be ignored. The toxicity of 2-bromo-1-fluoro-3-iodobenzene (Benzene, 2-Bromo-1-Fluoro-3-Iodo -) is of great significance.
    This compound has a unique structure, with bromine, fluorine and iodine atoms attached to the benzene ring. The benzene ring has a certain activity, and the trihalogen atom may cause its toxicity to be different. From the experimental point of view, in the living body, it may interfere with the metabolism of cells. The electronegativity of the halogen atom makes the molecule electrophilic, and it is easy to interact with biological macromolecules, such as proteins and nucleic acids, to disrupt its structure and function.
    And looking at its impact on experimental animals, after exposure, the animal behavior may be abnormal, and the organs may also be diseased. Liver, detoxification officer, or cell damage; nervous system, or dysfunction. Therefore, it can be seen that the toxicity of 2-bromo-1-fluoro-3-iodobenzene cannot be ignored. Follow-up studies should further explore its toxicological mechanism as the basis for protection and application.
    Future Prospects
    In the field of chemical research, I have also looked forward to the development that I have not yet thought about. In this paper, 2-bromo-1-fluoro-3-iodobenzene is mentioned.
    Not yet, or it can be refined in the synthesis method. Hope to increase its efficiency and cost in an easier and more efficient way. Also hope to expand its application, such as in the field of research, or use its special technology to form new products to cure common diseases.
    Or in the field of materials, because of its specialization, special materials are made, and used in the fields of electronics, energy, etc., to promote the development of related technologies. I believe that in a few days, this compound will be able to achieve its outstanding value and achieve a new situation.
    Where to Buy Benzene, 2-Bromo-1-Fluoro-3-Iodo- in China?
    As a trusted Benzene, 2-Bromo-1-Fluoro-3-Iodo- 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 Benzene, 2-Bromo-1-Fluoro-3-Iodo- supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the Chinese name of this compound?
    The Chinese name of this compound depends on the compound. However, because no information on the phase of the compound is provided, the Chinese name should be given.
    "Tiangong Wuwu" is a scientific and technological masterpiece written by Song Yunxing in the Ming Dynasty, in which there are many things and chemical processes. If you imitate its ancient saying, you can answer like this:
    If you want to know the Chinese name of this thing, you have not yet determined its shape and characteristics. "Tiangong Wuwu" has a saying: "Each thing in the world has its own name, and the name is expressed by the name, and the shape and phase are different." If you want to explain its name, you must first describe its physical properties, properties, and sources. For example, "Tiangong Wuwu" refers to the hardware, metal, metal, gold, gold, gold, gold, gold, and gold, all of which are specially named according to their colors and earth. And the thing obtained by a method like the is also named because of the method and nature. Today, this compound has neither its appearance nor its nature, nor its origin, so it is known that its name is correct. If you want to be named, it is advisable to observe its creation, its nature, and its origin, so that you can get its proper name, so that it can conform to its name, so that people can distinguish it.
    What are the physical properties of this compound?
    The compound has the following physical properties:
    Its color state is often [specific color and state, because the compound is temporarily absent], and its unique appearance can be seen from the perspective. In terms of odor, it may have [specific odor, because the compound is temporarily absent], and the smell can sense its taste.
    When it comes to solubility, the solubility in water is [specific solubility, because the compound is temporarily absent]. In organic solvents such as ethanol and ether, the dissolution performance is also different. In ethanol, it may be [specific dissolution performance, because the compound is temporarily absent], and in ether, it may be [corresponding dissolution phenomenon, because the compound is temporarily absent]. The melting point of
    is [specific melting point value, because the compound is temporarily absent]. When the temperature gradually rises, the compound begins to change its physical state. The boiling point is [specific boiling point value, because the compound is temporarily absent]. At this temperature, the compound changes from liquid to gaseous state.
    Density Compared with water, [specific density comparison, because the compound is temporarily absent], can be obtained by relevant experiments.
    Volatility, its degree of volatilization [specific degree of volatilization is described, because the compound is temporarily absent], under a certain period of time and environment, changes in its mass or concentration can be observed.
    In terms of conductivity, in both solid and liquid states, the conductivity is [specific conductivity description, because the compound is not clear], which is related to the internal structure of the compound and the ability of ions and electrons to move.
    The above physical properties are the key to understanding the properties of the compound. In practical applications and research, according to its different physical properties, suitable methods can be selected to separate, purify and identify the compound, and it can also provide a solid basis for its application in chemical, pharmaceutical, materials and other fields.
    What are the main uses of this compound?
    This compound is a rare wonder in the world. Its main uses are quite extensive, covering many fields, and it is of great significance to people's livelihood and all kinds of industries.
    In the path of medicine, this compound can be used as the foundation of good medicine. Doctors in ancient times often searched for all kinds of spiritual things to make good medicines and save people from illness and pain. This compound also has this ability, and its properties may help the medicinal power to reach the sick place and heal diseases. Or it can regulate the viscera, balance yin and yang, and restore health to patients. Gu Yun: "Medicine is benevolent, and it is based on saving people." This compound is in line with this benevolent technique in the path of medicine, adding a guarantee for the well-being of the people.
    Furthermore, in the field of utensil manufacturing, it also has extraordinary achievements. In the past, skilled craftsmen used exquisite skills to make utensils, and the quality of the materials was related to the quality of the utensils. This compound has a special texture, or is abnormally tough, or is light and durable. With its utensils, it can make the utensils durable, or light and portable. In production and labor, it can be used for agricultural utensils, helping cultivators get twice the result with half the effort; in daily use, it can be used for utensils, making people's lives more convenient.
    In the realm of alchemy and practice, this compound also has wonderful uses. Ancient alchemists pursued the path of longevity, and the art of alchemy prevailed. This compound is in the alchemy path, or is a key thing, helping alchemists to refine miraculous pills, so as to achieve longevity and otherworldly realm. Although the theory of immortality may be fantastical, it occupies a place in the tradition of alchemy and practice, reflecting the ancients' exploration of life and the unknown.
    All in all, this compound has shown unique uses in medicine, utensil manufacturing, alchemy and many other aspects. It is actually a spiritual object endowed by heaven and earth, and has a role that cannot be ignored in the operation and development of all things in the world.
    What are the common reactions of this compound during synthesis?
    The common reactions of this compound in synthesis are as follows:
    First, nucleophilic substitution reaction. The halogenated hydrocarbon reacts with sodium alcohol, and the halogen atom is replaced by an alkoxy group to form ether compounds. For example, the halogenated hydrocarbon R-X (X is a halogen atom) reacts with sodium alcohol R'O-Na, and the halogen atom of R-X is highly active and easy to be attacked by R'O-. X leaves in the form of halogen ions to form ether R-O-R '. This reaction condition is mild and is commonly used in organic synthesis to produce ethers.
    Second, addition reaction. If the compound contains a carbon-carbon double bond or triple bond, it can be added with a variety of reagents. Such as the addition of olefins and hydrogen halides, following the Markov rule, hydrogen atoms are added to double-bonded carbon atoms containing more hydrogen, and halogen atoms are added to double-bonded carbon atoms containing less hydrogen. Take the reaction of propylene and hydrogen chloride as an example to generate 2-chloropropane. For another example, addition with water, under acid catalysis, olefins react with water to form alcohols, and ethylene and water are added to obtain ethanol.
    Third, oxidation reaction. If the compound contains easily oxidized groups, such as alcohol hydroxyl groups, it can be oxidized by different oxidants. Primary alcohols can be oxidized to carboxylic acids under the action of strong oxidants (such as potassium dichromate acidic solution); under the action of mild oxidants (such as Sarit reagent), they can be oxidized to aldehyde. Secondary alcohols are oxidized to ketones, such as 2-propanol is oxidized to acetone.
    Fourth, esterification reaction. If the compound contains carboxyl groups, it can undergo esterification reaction with alcohols under acid catalysis to form esters and water. Taking the reaction of acetic acid and ethanol as an example, concentrated sulfuric acid acts as a catalyst and water absorber, and under heating conditions, ethyl acetate and water are formed. This reaction is reversible, and the yield can be improved by increasing the concentration of the reactants or removing the products in time.
    What is the market outlook for this compound?
    Nowadays, there is a chemical compound, and if you want to know its market prospect, this is related to the great business of businesspeople, and the key to profit is also.
    The world is changing from time to time, and technology is new and ever-changing. The use of chemical compounds involves a wide range of industries, from medicine to cure diseases to industrial tools to benefit the people. Its market is vast, if the sea is vast, it is also turbulent, and the competition is like a forest.
    In today's world, people's livelihood is getting richer and the demand is increasing day by day, and the demand for quality is becoming more and more stringent. If chemical compounds can respond to this trend, create high-quality products, comply with environmental protection regulations, conform to nature, and benefit people's livelihood, their market prospects will not be limited. For example, in the pharmaceutical industry, new diseases occur frequently, and old drugs may not work well. If the new drugs of chemical synthesis can overcome the disease and save people's lives, why is there no market? Another example is the manufacture of materials. Lightweight, high-strength, durable and anti-corrosion synthetic materials are urgently needed in the construction and transportation industries, and their prospects are also very promising.
    Of course, it should also be known that the market is changing and dangerous. The competition of others and the change of laws and regulations are all challenges. If the production of chemical composites is conformist, does not innovate, or violates laws and regulations, and harms the environment, although there is a temporary benefit, it will not last for a long time.
    Therefore, if you want to know the market prospect of this chemical synthesis, you must carefully observe the world situation, identify the needs, take innovation as the wing, and take compliance as the basis. In this way, you can soar in the sky of the market, obtain long-term profits, and become an immortal business. Observe all the signs, adapt to the times, and carefully manage them, and the market prospect may be bright; otherwise, you may be afraid that the road will be full of thorns and difficult to continue.