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Benzene, 1-(Bromomethyl)-3,5-Difluoro-2-Methoxy-

Benzene, 1-(Bromomethyl)-3,5-Difluoro-2-Methoxy-

Hongda Chemical

    Specifications

    HS Code

    609228

    Chemical Formula C8H7BrF2O
    Molecular Weight 237.04
    Appearance Solid (predicted)
    Boiling Point Approx. 240 - 260 °C (predicted)
    Melting Point Approx. 50 - 60 °C (predicted)
    Density Approx. 1.5 - 1.6 g/cm³ (predicted)
    Water Solubility Low (predicted)
    Logp Approx. 3 - 4 (predicted)
    Vapor Pressure Low (predicted)
    Flash Point Approx. 100 - 120 °C (predicted)

    As an accredited Benzene, 1-(Bromomethyl)-3,5-Difluoro-2-Methoxy- 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)-3,5 - difluoro - 2 - methoxy - benzene in sealed chemical - grade packaging.
    Storage Store “Benzene, 1-(bromomethyl)-3,5 -difluoro -2 -methoxy -” in a cool, dry, well -ventilated area away from heat sources, flames, and oxidizing agents. Keep it in a tightly sealed container, preferably made of a material resistant to corrosion by the chemical, to prevent leakage and exposure to air or moisture.
    Shipping The chemical "Benzene, 1-(bromomethyl)-3,5 -difluoro-2 -methoxy-" is shipped in specialized, well - sealed containers. Strict safety protocols are followed to prevent leakage, with appropriate labeling for hazard warnings during transportation.
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    Benzene, 1-(Bromomethyl)-3,5-Difluoro-2-Methoxy- Benzene, 1-(Bromomethyl)-3,5-Difluoro-2-Methoxy-
    General Information
    Historical Development
    Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy- this thing, its historical evolution is quite impressive. In the past, chemists have gone through countless studies on the way to explore the mysteries of matter. At first, the understanding of organic compounds was still shallow, and only the outline could be glimpsed. After years of delay, technology advanced, and instruments gradually refined, researchers began to analyze its structure in depth.
    In the field of organic synthesis, many scholars have worked hard to obtain this compound. From the initial conception of the reaction path to repeated experiments to adjust the conditions, they have tasted hardships. After many twists and turns, they found a suitable method to turn it from idea into reality. Its birth is an important node in the history of chemistry, paving the foundation for the subsequent development of organic chemistry, guiding new paths, opening up many possibilities, and pushing the wheel of chemistry forward.
    Product Overview
    There is a substance called "Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy-". Its shape is also benzene structure, with bromomethyl on one side and difluoro and methoxy on the other. This substance may have unique uses in the field of chemistry. Bromomethyl is active and can lead to many reactions to form new compounds. The side of difluoro and methoxy also affects its physical and chemical properties. It may involve nucleophilic substitution, or it may be related to the change of electronic clouds. Although not widely known, it may be a key material in the development of fine chemicals, medicine, etc., to be explored in depth by chemists of our generation, so as to understand its ability, develop its growth, and be used by the world.
    Physical & Chemical Properties
    Recently, in the research room, I focused on a product called "Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy-". The physical and chemical properties of this product are the core of my research.
    Looking at its physical properties, under room temperature, it may take a specific form, the color is also characteristic, and its smell may be unique. As for solubility, it varies in various solvents, or it is easily soluble in one type, but difficult to dissolve in others, which is related to its molecular structure characteristics.
    When it comes to chemical properties, its stability is crucial. In different chemical environments, in the face of various reagents, the reactions are different. In case of strong oxidants, there may be oxidation changes; in case of specific catalysts, or different reactions. The activity of its functional groups affects the direction of the overall chemical reaction. All of this needs to be carefully observed and carefully recorded to clarify the full picture of its physical and chemical properties and pave the way for subsequent research.
    Technical Specifications & Labeling
    There is a product today called "Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy-". In the technical regulations and identification (commodity parameters) of the product, it should be studied in detail.
    Check its technical regulations, the selection of raw materials must be precise, and the proportions must be accurate. The temperature, time and pressure of the reaction must be customized. If the temperature in the reactor is controlled in a certain range, the time is also fixed, so that the reaction can be smooth and the product is pure.
    As for the identification (commodity parameters), its chemical structure, physical and chemical properties, etc., should be clearly marked. The properties and purity geometry of this substance are all key. In this way, only those who can use this item can make good use of it according to its technical regulations and logos to achieve the desired effect.
    Preparation Method
    In order to prepare Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy- this product, when the preparation method is clear. The first raw material needs to be selected from pure materials, such as specific halides and compounds containing fluorine and methoxy groups. The preparation process first makes the relevant raw materials mixed in a certain proportion, put them in a reaction kettle at a suitable temperature, and promote them with a catalyst. The reaction step is quite critical. First, the halogenation reaction is initiated, and the bromomethyl is connected to the benzene ring, and then the reaction of fluorination and methoxylation is carried out. The reaction time and temperature are precisely controlled to ensure the complete reaction of each step. In this process, it is necessary to set up a good catalytic mechanism, choose a high-efficiency catalyst, and adjust the amount of catalyst in a timely manner to ensure that the reaction proceeds smoothly and efficiently, so as to obtain a pure product and prepare it well.
    Chemical Reactions & Modifications
    Today there is a chemical substance called "Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy-". In the field of chemistry, we often study chemical reactions and modifications. The reaction of this substance is related to its structure and characteristics.
    If you want to change the properties of this substance, you must understand the mechanism of its reaction. In its molecular structure, bromomethyl, difluoro and methoxy groups are each useful. Bromomethyl can initiate the nucleophilic substitution reaction, which is the way to introduce new groups. For difluoro, due to the strong electronegativity of fluorine, it can change the electron cloud distribution of the molecule, which in turn affects the reactivity. Methoxy groups are between electronic effects and spatial effects, and influence the direction of the reaction.
    We can adjust the reaction under different reaction conditions, such as changes in temperature, solvent, and catalyst. Or promote it to meet with nucleophiles and obtain new derivatives to expand its use and improve its properties. It is expected to have different capabilities in the fields of medicine and materials.
    Synonyms & Product Names
    A chemical called "1 - (bromomethyl) - 3,5 - difluoro - 2 - methoxybenzene" has a unique function in the field of chemical research. Its alias and trade names are also important for academic research.
    In the past, many chemical substances, due to their different names, caused communication and research, and each life was hindered. Just like in ancient books, the names of similar things are so mixed that it is difficult for scholars to distinguish them. Today, "1 - (bromomethyl) -3,5 -difluoro-2 -methoxybenzene" has different names according to its characteristics, structure, or because of the discoverer; trade names are related to marketing activities, uses, etc.
    Knowing its aliases and trade names is like a guiding light for researchers. It can help them accurately search the literature and clarify the situation of this thing in various experiments and applications. And in the chemical industry, between sales and transactions, accurate appellations are also the basis for smooth circulation. Therefore, exploring its aliases and trade names is of great significance in chemical research and industrial practice.
    Safety & Operational Standards
    Regarding the safety and operation specifications of "1- (bromomethyl) -3,5-difluoro-2-methoxylbenzene" products
    The "1- (bromomethyl) -3,5-difluoro-2-methoxylbenzene" is an important substance in chemical research. Safety and standardization are the key to its experimental operation and research process.
    The first word is safe, this substance may be dangerous. Its chemical properties are active, and it may cause damage to the human body when it comes into contact with the skin, inhaled or ingested by mistake. Therefore, researchers should be fully armed, wearing protective clothing, protective gloves, and protective masks to prevent it from coming into contact with the body. The laboratory should also be well ventilated to prevent the accumulation of harmful gases.
    Times and operating specifications. When taking this substance, use clean and dry utensils to measure it accurately, and do not spill the medicine. The experimental operation should be on a smooth and tidy table, and there should be no irrelevant debris around, so as not to interfere with the operation and cause danger. During the reaction process, it is necessary to strictly control the temperature and control, and operate cautiously according to the established steps. After the reaction, properly dispose of the remaining drugs and waste, and do not discard them at will to prevent pollution of the environment.
    Furthermore, storage is also exquisite. When placed in a cool, dry and ventilated place, away from fire sources and oxidants, and sealed to prevent its deterioration or volatilization, resulting in potential safety hazards.
    In short, in the research operation of "1 - (bromomethyl) -3,5 -difluoro-2 -methoxybenzene", researchers must always keep in mind safety first and strictly abide by the operating norms in order to ensure the smooth operation of the experiment and protect the safety of themselves and the environment.
    Application Area
    It is widely used in various fields. In the field of medicine, or as a key raw material for the creation of special and effective medicines, it can help physicians overcome difficult diseases and save patients from sinking diseases. In the world of materials, it can turn decay into magic, produce materials with specific properties, apply to high-tech, and promote the improvement of equipment. In the chemical process, it can be a reaction hub, leading a new way of synthesis, developing new chemical products, and increasing the efficiency of industry. This substance is like the key to wisdom, opening a new chapter in the application field, waiting for our scientific researchers to study deeply, tap endless potential, and benefit the world.
    Research & Development
    Today there is a chemical substance called "Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy-". As a researcher of chemistry, I have paid great attention to the research and development of this substance.
    Looking at this substance, its structure is unique, containing groups such as bromomethyl, difluoro and methoxy, which interact or produce different properties. Studying its properties shows its performance in chemical reactions, which can be applied to the development of new drugs or to the creation of materials.
    To pursue its development, we need to explore the best synthesis path, increase yield and reduce costs. It is also necessary to consider its environmental impact and strive for green methods. In this way, it is expected that this substance will be widely used in many fields, promoting the progress of chemistry and adding luster to human well-being.
    Toxicity Research
    Study on the toxicity of 1- (bromomethyl) -3,5-difluoro-2-methoxybenzene
    If you want to investigate the toxicity of 1- (bromomethyl) -3,5-difluoro-2-methoxybenzene, you must first investigate its structure and properties. This compound contains bromomethyl, difluoro and methoxy groups, and has a unique structure.
    To observe its reactivity, bromomethyl is active and easily reacts with nucleophiles in organisms or causes changes in cell components. Fluorine atoms are highly electronegative and affect molecular polarity and metabolic pathways. Although methoxy groups are relatively stable, they also play a role in the whole molecule.
    As far as toxicity experiments are concerned, when starting with cell experiments, observe their effects on the growth, proliferation and apoptosis of different cell lines. Then it was supplemented by animal experiments to observe the acute and subacute toxicity of it after oral, percutaneous or inhalation. Analyze from multiple dimensions such as biochemical indicators and histopathological changes to understand its effect on various systems of the body. In this way, the toxicity of 1- (bromomethyl) -3,5-difluoro-2-methoxybenzene can be known in detail, providing a basis for its safe application and protection.
    Future Prospects
    Looking at the moment, there is a product named "Benzene, 1- (Bromomethyl) -3, 5-Difluoro-2-Methoxy-", which has considerable development in the future. The application of this chemical product may be widely involved in the fields of medicine and materials. Together with medicine, it is expected to become the foundation of new and good medicines, help heal diseases, and solve the suffering of everyone. In the field of materials, or endow materials with specific properties, such as better toughness, corrosion resistance, etc. With time, in-depth study and rational use, it will surely shine, bring many benefits to the world, and achieve extraordinary work. This is my vision for its future development.
    Where to Buy Benzene, 1-(Bromomethyl)-3,5-Difluoro-2-Methoxy- in China?
    As a trusted Benzene, 1-(Bromomethyl)-3,5-Difluoro-2-Methoxy- 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)-3,5-Difluoro-2-Methoxy- 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 has a variety of chemical properties. It is acidic and can neutralize with alkali substances such as sodium hydroxide to form corresponding salts and water. This is because the compound contains groups that can dissociate hydrogen ions.
    The compound is also reductive. In a specific chemical reaction, it can give electrons and is oxidized by itself. For example, when it encounters some strong oxidants, the valence of the oxidant can be reduced, and its own oxidation changes occur. This is due to the fact that the compound contains elements or atomic groups with reducing properties.
    At the same time, this compound also exhibits certain stability. Under normal temperatures and common chemical environments, the structure is relatively stable and it is not easy to spontaneously decompose. This is due to the strength of its chemical bonds and the spatial structure of the molecule, so that the interaction force between the atoms in the molecule is maintained at a certain level, ensuring the overall stability of the compound.
    Furthermore, it has solubility. In specific solvents, such as some organic solvents, it can be dissolved to form a uniform solution. This property is related to the interaction force between the compound molecule and the solvent molecule. If the two interact strongly, it will help the compound to disperse and dissolve in the solvent.
    In addition, the compound also has the property of complexing with metal ions. It can bind to specific metal ions through coordination bonds to form a stable complex. This property has important applications in many chemical fields, such as catalytic reactions, separation and detection of metal ions, etc.
    What fields is it used in?
    This thing is useful in all kinds of fields. In the field of agriculture, it can help cultivators save effort. In the past, the cattle were pulled by the scorpion, breaking the soil and turning the fields, but the human control was quite laborious. Today there is this thing, with ingenious power, it is controlled and used, and the fields are reclaimed quickly and evenly. The work in one day is several times better than in the past. Farmers can reduce labor, and the planting of the fields is more timely, and the land yield increases.
    In the world of construction, it can carry heavy objects. In the past, building cities and repairing temples, masonry and wood, all relied on manpower to carry on the shoulders, which was time-consuming, laborious, and inefficient. Today, with this thing, you can lift huge trees, or lift boulders, and it is easy and comfortable. The construction of high-rise buildings can be done quickly, and the city is more sturdy than it used to be.
    It is also beneficial to travel on the road. In the past, when traveling, or on foot, or by cattle and horses, the journey was slow. Today there is this thing, which travels on land, the wind is fast, and it is a hundred miles in an instant; when traveling on waterways, it cuts waves, and it is fast and stable. Business travel back and forth, and the transportation of goods, all because of its convenience, and the communication in the world is more smooth.
    In the business of craftsmanship, utensils can be refined. In ancient times, craftsmen, carving utensils, all rely on the skills of their hands. Although there is ingenuity, the subtleties are inevitable omission. This object is precisely cut and polished, and the finished tool is exquisite, and the craftsmanship is exquisite, far better than its predecessors.
    It can be seen that the use of this object is all over the fields of agriculture, construction, transportation, craftsmanship, etc. It is an indispensable weapon in this world and contributes a lot to the well-being of all people in the world.
    What is its synthesis method?
    The synthesis method is as follows:
    Those who control heaven and earth are the reverse journeys of all things; those who pass through time are the passers-by of hundreds of generations. All kinds of creations in the world have their own methods. If you want to make something, you must first know the materials it needs, and understand the order in which it is applied.
    Take the sword as an example, the first choice is fine iron, which is the foundation of the sword. For fine iron, you need a pure texture with very few impurities. In the mountains and rivers, look for the place where the iron stone is hidden. After mining, it is calcined by fire and beaten repeatedly to remove its dross and make the iron tough. This process requires the blacksmith to control the heat and beating power with extraordinary skills and endurance. The temperature of the fire should not be too high or too low. If the iron is high, it is easy to melt, and if it is low, the impurities are difficult to remove. When beating, the priority should be paid attention to. If the force is too strong, the iron may cause brittle cracking; if the force is too light, it is difficult to shape.
    When the iron is pure and tough, it will enter the process of casting molds. The casting mold depends on the shape of the sword. Whether it is a long sword, or a short sword, or a broad sword, or a thin sword, the shape of the mold determines the shape of the sword. Calcined to a red molten iron, slowly inject it into the mold, the action needs to be stable, and there should be no slight mistakes. The molten iron is filled, and it needs to be cooled and formed.
    After forming, it needs to be sharpened. The method of sharpening is related to the sharpness of the sword. Choose a grindstone with suitable texture, first grind it coarsely, remove the brown surface left by its casting mold, so that the sword body is smooth; then grind it finely to increase its sharpness. When sharpening a sword, you need to be patient and not rush for success. Every sharpening is related to the quality of the sword.
    Furthermore, the accessories of the sword should not be ignored. For the handle of the sword, you need to choose wood with good texture, or wrap it with silk thread to make it comfortable to hold. The material of the scabbard, either wood or leather, is carved and decorated, which is not only beautiful, but also protects the sword.
    All these, from material selection, calcination, casting, grinding to accessories, are all synthetic methods for casting swords. The synthesis of all things in the world is probably like this, and it needs to be carefully and intertwined in order to become its good product.
    What are its physical properties?
    The physical properties of a certain utensil are particularly important, related to its use, its quality, and its nature, so it should be carefully observed.
    There is a thing today. If you want to study its reality, you should observe its shape, its quality, and its use. Looking at its shape is to know the regularity of its outer shape. Square or round, long or short, all of which are related to its state in space. Like the shape of an axe, it is sharp to chop wood. The blade is thin and the body is thick to gather its strength.
    If you observe its quality, you will understand the properties of its materials. Gold is strong, wood is soft, and stone is solid. Different materials have different properties. Hardware has ductility and conductivity, can be cast, and can conduct current; woodware has flammability and heat insulation, and can be used as a salary or as a handle for utensils. The quality of utensils is determined to be brittle, warm and cool, and light and heavy.
    If you consider its use, you will know its function. For carts, they can travel on the road, carry people and goods; for boaters, they can be flooded with water and reach the sea. If they are used differently, the method of making utensils and the regulations for selecting materials will also be different. The use of utensils must meet the needs of personnel, so as to benefit people's livelihood.
    The physical properties of utensils are related to shape, quality, and use. The shape depends on the quality, and the quality is related to the use, and the shape is determined. Those who are good at observing, push the quality from the shape, and know how to use it because of the quality. The three are integrated, and the physics of the utensils is known. Looking at ancient utensils, although they have different shapes and forms, they all follow this path. Craftsmen who make utensils must first make the best use of them, and then select materials and shape them to form something suitable for the world. It is based on the physical properties of utensils that it is of great benefit to recognize and make utensils.
    How stable is it?
    How qualitative is it? This is a profound meaning, let me explain it to you.
    The qualitative of a material is its ability to resist external interference and maintain its own characteristics. The qualitative of a material is affected by many factors.
    Taking hardware as an example, gold is not easy to combine with other things, and it is not easy to be combined with other things. Therefore, it is often cherished by the world and used in making tools and materials. Because its atoms are dense, the outer particles are fixed, and the outer particles are fixed, so they can be transformed and reversed.
    Otherwise, when exposed to water and oxygen, it is easy to produce oil. This is because of its chemical activity, the outer particles are easy to lose, and the biochemical combination of water and oxygen is generated. However, if methods such as painting and painting are applied, it can increase its quality and extend its use.
    Another example is wood, which is prone to moth and decay. However, if special methods are applied, such as soaking and anti-corrosion, it can increase its quality and can last for a long time without loss.
    Re-stone, the quality of stone, and its quality. Flower rock, hard and dense, can resist rain intrusion, and it will last for a long time; while rock, clear and easy to melt and fall.
    The quality of everything, not only its own nature, but also the external environment. If you want to increase its quality, you need to study its essence and apply a good law, because of its benefits, so that it can always protect its quality and quality.