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Benzene, 1-(Bromomethyl)-2-Fluoro-4-Nitro-

Benzene, 1-(Bromomethyl)-2-Fluoro-4-Nitro-

Hongda Chemical

    Specifications

    HS Code

    658754

    Chemical Formula C7H5BrFNO2
    Molar Mass 236.02 g/mol
    Solubility In Water Low solubility expected (organic compound with non - polar benzene ring)
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, acetone, etc.
    Logp Positive value expected due to non - polar benzene ring contributing to lipophilicity
    Reactivity Reactive due to bromomethyl, fluoro, and nitro functional groups, can undergo nucleophilic substitution, electrophilic aromatic substitution etc.

    As an accredited Benzene, 1-(Bromomethyl)-2-Fluoro-4-Nitro- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100g of 1-(bromomethyl)-2-fluoro-4-nitro - benzene in a sealed, labeled chemical - grade bottle.
    Storage Store “Benzene, 1-(bromomethyl)-2-fluoro -4 -nitro -” in a cool, dry, well - ventilated area away from heat, flames, and oxidizing agents. Keep it in a tightly - sealed container, preferably made of corrosion - resistant material. Given its potentially hazardous nature, store it in a dedicated chemical storage cabinet, separated from incompatible substances to prevent reactions and ensure safety.
    Shipping The chemical "Benzene, 1-(bromomethyl)-2-fluoro - 4 - nitro -" should be shipped in accordance with hazardous material regulations. Use appropriate, sealed containers to prevent leakage during transit to ensure safety.
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    Benzene, 1-(Bromomethyl)-2-Fluoro-4-Nitro- Benzene, 1-(Bromomethyl)-2-Fluoro-4-Nitro-
    General Information
    Historical Development
    I have tried to study the technology of chemical industry, and I have explored many organic things. Now, when I talk about Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro-this compound, its historical evolution is very meaningful.
    In the past, organic chemistry was just emerging, and all the sages were dedicated to the exploration of new things. At that time, the conditions were simple and the exploration was difficult. However, the scholars were unremitting, and after repeated experiments, the properties of the compound were gradually clarified.
    This compound was little known at the beginning. Later, due to the increasing demand for chemical industry, the research was deepened. People have studied the reaction mechanism and synthesis path many times. From the initial ignorance to the precise control of its synthesis in the future, this is due to the efforts of countless ancestors. Its historical development has witnessed the flourishing of organic chemistry, paving the way for future generations to develop new materials.
    Product Overview
    Today there is a substance called "Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro-". This compound has a unique structure. On the benzene ring, bromomethyl, fluorine atoms and nitro groups are in their respective positions. Bromomethyl is attached to one end of the benzene ring and has the characteristics of bromine. It is active and can interact with many reagents or lead to nucleophilic substitution reactions. The fluorine atom is in the ortho position. Due to its strong electronegativity, the density distribution of the electron cloud of the benzene ring changes, which affects the chemical activity and reaction tendency of the compound. The nitro group is in the opposite position and has strong electron absorption, which not only further offsets the electron cloud of the benzene ring, but also can be used as an excellent leaving group in many reactions, or participate in reduction and other reactions. Its physical properties are also unique due to the existence of each This compound is an important object of chemical research and may have extraordinary applications in fields such as organic synthesis.
    Physical & Chemical Properties
    The properties of a chemical are related to scientific research. In this sentence, 1- (bromomethyl) -2 -fluoro-4 -nitrobenzene. This substance also has special physical and chemical properties. Looking at its physical properties, under room temperature, or in a solid state, the color state varies according to the preparation method and pure impurities. Its melting boiling point, after precise determination, melts at a specific temperature, causing changes in the state of matter; the boiling point is also fixed, which is the boundary of gasification.
    On its chemical properties, above the benzene ring, bromomethyl, fluorine and nitro groups occupy different positions, causing their activities to be different. Nitro has strong electron absorption, which reduces the density of the electron cloud of the benzene ring and is prone to electrophilic substitution. The bromine atom in methyl bromide is active and can be substituted by ginseng. It interacts with nucleophiles to produce new compounds. Although the fluorine atom is small, it alters the molecular electron distribution and affects the reaction path. This kind of characteristic is the basis for chemical synthesis and application. In the scientific research path, its mysteries are explored, and new materials are created and new drugs are developed.
    Technical Specifications & Labeling
    Technical specifications and labeling of 1- (bromomethyl) -2-fluoro-4-nitrobenzene (commodity parameters)
    Fu 1- (bromomethyl) -2-fluoro-4-nitrobenzene, the technical specifications are related to the synthesis method. In the art of chemical synthesis, the temperature, pressure and duration of the reaction need to be controlled. The purity of the starting material is also the key, and it is related to the quality of the product. In the reaction, the choice of solvent and the use of catalyst are all determined.
    As for the label (commodity parameters), the appearance or a specific color state needs to be clearly observed. The standard of its purity should be accurate and accurate, in line with the industry standard. Molecular weight, melting point, boiling point and other parameters must also be recorded in detail so that the user can clarify their properties and be suitable for various purposes. This is the key to the technical specifications and labels (commodity parameters) of 1- (bromomethyl) -2-fluoro-4-nitrobenzene, and should not be ignored.
    Preparation Method
    To prepare 1 - (bromomethyl) - 2 - fluoro - 4 - nitrobenzene, the method is as follows: first take the raw material and use a specific process. Select a suitable starting material and obtain it through several steps of reaction. The first step is to choose a reactant, mix it with conditions in a certain proportion, and react. This step requires precise temperature control and duration to make the reaction sufficient. The second step is to add other substances, adjust the reaction environment, and promote the transformation. During the reaction step, pay attention to the order of addition of each substance and the change of reaction conditions. As for the catalytic mechanism, choose the appropriate catalyst, which can accelerate the reaction process, reduce the activation energy, and make the reaction more likely to occur. Through these steps and careful operation, it is expected to produce 1- (bromomethyl) -2 -fluoro-4 -nitrobenzene.
    Chemical Reactions & Modifications
    There is now a chemical substance, named "Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro-". In the way of chemical research, its reaction and modification are crucial.
    Looking at this substance, its structure is unique, bromomethyl, fluorine, and nitro are attached to the benzene ring. This structure makes its chemical properties different. In the reaction, due to the activity of bromomethyl, it can cause nucleophilic substitution changes; the electronegativity of fluorine affects the distribution of electron clouds; the strong electron absorption of nitro groups reduces the density of electron clouds in the benzene ring.
    Want to modify it, or it can change its substituent by chemical reaction. If a suitable reagent is used, the bromomethyl group can be substituted, the group it connects to can be changed, and its properties can be changed. Or for nitro and fluorine, with a specific reaction, change its electronic effect to achieve the purpose of modification. In this way, in the process of chemical research, more possibilities can be explored, and the rules of its property changes can be clarified, paving the way for various applications.
    Synonyms & Product Names
    I have heard of a thing named 1- (bromomethyl) -2-fluoro-4-nitrobenzene. It has unique characteristics among various chemicals. This name is also scientifically accurate to clarify its composition and structure. However, things in the world often have different names due to their use.
    Or because of its use, in the field of industry and commerce, it gets the name of a commodity, which is convenient for circulation and trading; or because of its category and characteristics, it has a synonym to meet the needs of different situations. This synonym and trade name are not random, but are based on their chemical essence and application scenarios.
    The beauty of chemistry lies in accurately understanding the nature of substances, and the diversity of names also reflects their multiple roles in different fields. 1 - (bromomethyl) - 2 - fluoro - 4 - nitrobenzene, exploring its essence with its original name, responding to the needs of the world with synonyms and trade names, co-painting the colorful picture of chemical substances in human life.
    Safety & Operational Standards
    1- (bromomethyl) -2-fluoro-4-nitrobenzene
    Fu1- (bromomethyl) -2-fluoro-4-nitrobenzene is a common compound in chemical research. When using and studying this substance, safety and operating standards are of paramount importance.
    Safety is the first word. This compound is dangerous. The presence of bromomethyl makes it halogenated hydrocarbon, which can react with many biological molecules in the human body. If it comes into contact with the skin, rinse it with a large amount of water as soon as possible, and then treat it with a suitable neutralizing agent. Its nitro structure also increases its chemical activity, and it may explode when heated or hit. Therefore, when storing, it should be placed in a cool, dry and well-ventilated place, away from fire and heat sources, and separated from flammable, explosive and reducing substances.
    Times and operating specifications. Before the experimental operation, the experimenter should be familiar with the relevant operating procedures and wear appropriate protective equipment, such as laboratory clothes, protective gloves and goggles, to prevent accidental contact. Operate in a fume hood to ensure air circulation in the experimental environment and avoid the accumulation of gaseous substances evaporated by the compound. After use, the remaining 1- (bromomethyl) -2-fluoro-4-nitrobenzene and related reaction products should be properly disposed of in accordance with regulations, and should not be dumped at will to avoid polluting the environment.
    In conclusion, the study of 1- (bromomethyl) -2-fluoro-4-nitrobenzene must be based on safety and follow strict operating standards, so as to ensure the smooth operation of the experiment and ensure the safety of the experimenter and the environment.
    Application Area
    A chemical substance named "Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro-" has a crucial application field.
    In the field of pharmaceutical development, this compound may become a key raw material for the synthesis of specific drugs. The structure of the benzene ring and the specific groups attached to it give it unique chemical activity, which can be modified by ingenious reactions to act on specific biological targets, or help develop new antimicrobial and anticancer drugs, bringing good news to patients.
    In the field of materials science, it also has potential applications. With its unique chemical composition, it may be able to participate in the synthesis of materials with special properties, such as optical materials that are sensitive to specific light, or polymer materials with good stability and functionality, shining brightly in optical devices, electronic components, etc., and promoting technological innovation in related fields.
    Research & Development
    Recently, I studied chemical substances in the room, focusing on Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro-this compound. I studied its properties in detail, observed the delicacy of its structure, and explored the mechanism of the reaction.
    During the experiment, we operated cautiously and strived for accuracy. Observing its changes under different conditions, we recorded it in detail. After repeated attempts, we finally achieved some results.
    I know that the research road is long, but I am determined. I want to further advance this research, explore more unknowns, hope to make breakthroughs, and contribute a small amount to the development of this compound, so as to promote the progress of the chemical field, and move forward unremittingly.
    Toxicity Research
    There is a substance under study today, named "Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro-", which is closely related to its toxicity. This substance has a unique structure and contains bromomethene, fluorine, and nitro groups in the benzene ring. Chemical properties often prevent its toxicity. Bromomethyl is active, or easily interacts with biomolecules, disrupting its physiology. The introduction of fluorine changes molecular polarity, increases lipid solubility, and easily enters cells. Nitro has strong oxidative properties, or causes oxidative damage to cells. Looking at past studies, benzene series containing nitro and halogenated compounds are mostly neurotoxic and genotoxic. This "Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro-" may also have similar toxicity and damage human health. However, the exact toxicity still requires multiple experiments, using animals as models to measure its half lethal dose and observe its impact on organs and genes, in order to understand the depth of its toxicity and serve as the basis for protection and treatment.
    Future Prospects
    The future of the future is of paramount importance to the research of chemical substances. In this case, Benzene, 1- (Bromomethyl) -2-Fluoro-4-Nitro- has not yet been developed. This compound has the characteristics of bromomethyl, fluorine and nitro, or can be used in the research of new compounds. With its unique characteristics, it is expected to be the target of specific diseases and the specific effect of the solution. Moreover, in the field of materials, it may also be able to improve the properties of polymer materials, making them more qualitative and reliable. However, in order to achieve this situation, we need our researchers to make unremitting research, refine the synthesis method, and improve the efficiency and efficiency, in order to be able to excavate the strength of this compound and improve the well-being of people.
    Where to Buy Benzene, 1-(Bromomethyl)-2-Fluoro-4-Nitro- in China?
    As a trusted Benzene, 1-(Bromomethyl)-2-Fluoro-4-Nitro- 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, 1-(Bromomethyl)-2-Fluoro-4-Nitro- supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What are the chemical properties of this compound?
    This compound is called amalgam, which is an alloy of mercury and other metals. Its chemical properties are unique. Compared with the various metal elements that make up it, there are both commonalities and differences.
    Among amalgams, mercury is mostly relatively stable. After many metals form amalgam with mercury, their activity changes. For example, sodium in sodium amalgam is significantly less active than elemental sodium. Due to the presence of mercury atoms, the distribution of electron clouds of sodium atoms is affected, weakening the ability of sodium to lose electrons, and then making sodium amalgam far less active in chemical reactions than elemental sodium.
    Amalgam usually has a certain metallic luster and conductivity at room temperature. Its conductivity depends on the type and proportion of metals contained. For example, amalgams containing more metals with good electrical conductivity (such as silver, copper, etc.) have relatively strong conductivity.
    The stability of amalgam is also closely related to the composition. Some amalgams can remain relatively stable in air and are not easily oxidized; however, some amalgams can also undergo chemical reactions under certain conditions. For example, zinc amalgams, if exposed to humid air, will gradually oxidize, resulting in changes in the properties of amalgam.
    In chemical reactions, amalgam can sometimes be used as a special reducing agent. For example, in organic synthesis, the Clemmensen reduction system composed of zinc amalgam and concentrated hydrochloric acid can reduce carbonyl to methylene. In this reaction, the presence of amalgam facilitates the transfer of electrons and promotes the smooth progress of the reaction.
    The chemical properties of amalgam are restricted by many factors, including the type and proportion of the constituent metals and the external environment, etc. These characteristics make amalgam have unique applications in many fields.
    What are the physical properties of this compound?
    The physical properties of this compound are diverse. Its color may be transparent, or it may be slightly colored, such as clear water, or a slightly lighter color. Its shape is often crystalline, and the crystals are orderly, just like a carefully carved stone. It has a certain shape and a clear angle. It is also a powder. If it is like a stone, it will disperse immediately.
    In terms of melting, it is characteristic. A specific degree is required to make it from solid to liquid. The fusion phase is fixed, just like a layer. At this limit, the material will begin to change. Under a specific force environment, the boiling temperature is also fixed. When the temperature rises to the boiling temperature, the compound will be steamed and the liquid will be transformed.
    Its density is also one of the important physical properties. The amount of matter contained in it reflects the distribution of its amount. Different from the amount of matter, it may have a certain sense of weight. In terms of solubility, it is soluble in some solutions, such as in contact with water or a specific solution, or it can be quietly integrated to form a homogeneous solution; in other solutions, it may refuse to be incompatible, and it is divided into two parts.
    In addition, its hardness also has a certain degree of hardness, or it has a certain degree of hardness, which can resist a certain external force. Rub; or it is soft, and it may be shaped with a little force. On the optical surface, or with light transmittance, like a transparent glass, light can be worn through; or the light has a specific refraction and reflection effect, such as a beautiful transparent or transparent surface, showing a strange light image.
    What fields is this compound used in?
    The wonders of this combination involve a wide range of fields. In the realm of alchemy, this compound is often the key. If the alchemist wants to find a wonderful medicine for longevity, he needs to use various methods of combination to reconcile all kinds of medicinal stones. This compound may be blindly used in the pill recipe to help the pill form and stabilize the medicinal power, or it can catalyze the reaction, making the effect of the pill even more effective. Ancient alchemists, day and night, study the five elements to generate calories and the wonders of combination, and hope to obtain extraordinary pills. The role of this compound in the process cannot be underestimated.
    In the world of instrument casting, there are also traces of it. If a swordsmith wants to cast a sharp blade, he needs to consider the combination of metals. This compound may change the characteristics of metals, making them tougher and sharper. If the compound is combined with iron, the texture of the iron can be more dense, and the edge is not easy to fold. And when casting heavy objects such as bell tripods, this compound may help control the fluidity of metals, making the casting of the utensils more accurate, the decoration is clearer, and it shows a solemn and elegant state.
    It is also used in medical medicine. Doctors know the principle of drug synthesis well, so as to achieve the purpose of curing diseases and saving people. This compound may interact with other medicinal materials to enhance the efficacy of medicine, or neutralize toxicity, making the prescription safer and more effective. For some difficult and complicated diseases, it is necessary to skillfully use the method of synthesis to prepare medicinal materials. This compound has become a sharp tool in the hands of doctors, helping them overcome diseases and save lives.
    In agricultural cultivation, this compound is also beneficial. It can improve soil and enhance soil strength. Applying it to the field can adjust the pH of the soil and make the soil more suitable for crop growth. And it can provide necessary nutrients for crops, promote the development of crop roots, lush branches and leaves, and then improve the harvest and ensure the food of people's livelihood.
    It can be seen that this compound has important applications in alchemy, equipment casting, medical medicine, agricultural cultivation and many other fields, contributing greatly to the development of ancient people's lives and skills.
    What is the method of synthesis of this compound?
    To prepare this compound, the method is as follows:
    First take an appropriate amount of the A substance and place it in a clean vessel. The A substance needs to be carefully selected to ensure its purity and quality. Then, simmer it slowly, so that the A substance melts slowly. During this period, it needs to be stirred continuously to prevent local overheating and deterioration. Wait until the A substance is completely melted into a uniform liquid and set aside.
    Take another B substance, and the B substance also needs to be carefully screened. Grind the B substance into a fine powder, the finer the better, so that the subsequent reaction can be fully carried out. Gradually add the ground B substance to the melted A substance liquid. When adding, the speed should be slow, and the stirring should be continued to make the two fully mixed and blended.
    At this point, it can be seen that the mixture begins to undergo subtle changes. Then, raise the temperature to a suitable temperature, maintain this temperature for a period of time, and promote the reaction to proceed in depth. During this process, pay close attention to the changes in the color and texture of the mixture, which is the key to judging the reaction process.
    When the reaction reaches a certain level, it can be seen that the mixture is in a specific state, which is a sign that the reaction is close to completion. Then, remove it from the fire and place it in a well-ventilated place to let it cool naturally. When cooling, it should also be slightly careful not to expose it to external contamination.
    After it is completely cooled, the resulting product is the compound to be prepared. The whole process requires the operator's attention and caution, and each step is related to the quality of the final product. If there is a slight mistake, it may fall short. Therefore, it is necessary to strictly follow this method of preparation before the compound can be successfully prepared.
    What are the effects of this compound on the environment or on humans?
    This chemical compound, in the world, its impact on the environment and human body is quite important.
    Looking at the environment, if this thing flows into nature, it may cause great changes. In the water system, or in combination with various substances in the water, causing water quality variation. Aquatic organisms depend on water for life, and the water quality changes, and their survival and reproduction are impacted. Or cause the number of some species to drop sharply and the ecological balance to be disrupted. For example, between rivers, lakes and seas, aquatic animals and plants depend on each other. If a species population is damaged due to the compound, the food chain is interconnected, and other things will not be spared, and the entire aquatic ecosystem will be disrupted.
    In the soil, the compound may affect the fertility and structure of the soil. Soil is the foundation for the growth of all things. If the fertility structure changes, plant growth will be hindered. Plants cannot normally absorb nutrients from the soil, or cause stunting, crop failure, and sparse mountain forest vegetation. And changes in soil structure may reduce the ability of soil to retain water and fertilizer, exacerbating the problem of soil erosion.
    As for the human body, there are also many potential dangers. If people ingest this substance through breathing and diet, it may damage their physical functions. In the respiratory system, or irritate the mucosa of the respiratory tract, causing cough, asthma and other diseases. Long-term exposure may increase the risk of respiratory diseases and even cause lung diseases. In the digestive system, it may interfere with the normal digestion and absorption of the human body, damage gastrointestinal function, and cause abdominal pain, diarrhea and other diseases. What's more, the compound may be teratogenic and carcinogenic, threatening human life and health, and harming future generations.
    Therefore, when dealing with this chemical compound, extreme caution should be taken, and its impact on the environment and human body should be carefully investigated in order to seek advantages and avoid disadvantages, to ensure the harmony of heaven and earth, and the well-being of humans and animals.