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Benzene, 1-(Bromomethyl)-2-Fluoro-3-Methoxy-

Benzene, 1-(Bromomethyl)-2-Fluoro-3-Methoxy-

Hongda Chemical

    Specifications

    HS Code

    279787

    Chemical Formula C8H8BrFO
    Molecular Weight 221.05

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

    Packing & Storage
    Packing 500g of 1-(bromomethyl)-2 -fluoro-3 -methoxy -benzene in a sealed, labeled chemical bottle.
    Storage Store “Benzene, 1-(bromomethyl)-2-fluoro-3-methoxy-” in a cool, well - ventilated area, away from heat sources and ignition points. Keep it in a tightly - sealed container to prevent leakage. As it may react with certain substances, store it separately from oxidizing agents, strong acids, and bases. Use appropriate storage cabinets designated for hazardous chemicals.
    Shipping For shipping "Benzene, 1-(bromomethyl)-2-fluoro-3-methoxy-", it must be in proper, leak - proof containers. Label as a hazardous chemical. Follow all relevant transportation regulations for safe and compliant shipping.
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    Benzene, 1-(Bromomethyl)-2-Fluoro-3-Methoxy- Benzene, 1-(Bromomethyl)-2-Fluoro-3-Methoxy-
    General Information
    Historical Development
    In the past, when I was studying in the field of chemistry, I came across a compound called "Benzene, 1- (Bromomethyl) -2-Fluoro-3-Methoxy-". When I first encountered this compound, I only knew that its structure was unique, but its historical evolution was still unknown.
    Then I searched the classics and traced back to the past. Only then did I know that the research of this compound has gone through the efforts of generations of scholars. In the early years, the chemical ancestors explored the road of organic synthesis and constantly tried new reaction paths to obtain a preliminary understanding. After many experimental improvements, the synthesis method has gradually become more perfect.
    With the passage of time, the analytical technology has become more and more mature, and the analysis of its physical and chemical properties has become more accurate. The potential applications of this compound in the fields of medicine, materials and other fields have gradually emerged. Its historical development is like a slowly unfolding picture, each step embodying the wisdom and sweat of our predecessors, leading our generation on the journey of chemical research, constantly moving forward and exploring the unknown.
    Product Overview
    A chemical named 1 - (bromomethyl) - 2 - fluoro - 3 - methoxy benzene (Benzene, 1 - (Bromomethyl) - 2 - Fluoro - 3 - Methoxy -), which is a key compound in the field of organic synthesis. Its appearance is colorless to pale yellow liquid, with a special odor.
    From a structural perspective, there are bromomethyl, fluorine atoms and methoxy groups attached to the benzene ring. This unique structure gives it many special properties and reactivity. In organic synthesis, methyl bromide can be used as a check point for electrophilic substitution reactions, fluorine atoms can change the distribution of molecular electron clouds, affecting reaction selectivity, and methoxy groups also have a significant impact on their chemical properties.
    In practical applications, this compound is often used as an important intermediate for the synthesis of a variety of biologically active compounds, showing potential application value in drug development and materials science, providing an important foundation for research and development in related fields.
    Physical & Chemical Properties
    Today, there is a substance called "Benzene, 1- (Bromomethyl) -2-Fluoro-3-Methoxy-". It is very important to explore its physical and chemical properties. The physical properties of this substance are related to its color, state, taste and melting point. Looking at its form, it may be liquid at room temperature, colorless and has a special smell, because its structure contains halogen atoms and methoxy groups. Its boiling point may vary due to intermolecular forces, and halogen atoms enhance molecular polarity and increase boiling points.
    On its chemical properties, the presence of benzene rings makes it aromatic, and electrophilic substitution can occur. Bromine active methyl is prone to nucleophilic substitution. Fluorine atoms have strong electronegativity, which affects the distribution of electron clouds in benzene rings, and the reactivity is different. Methoxy power supply also affects the reaction check point and rate. Detailed study of the physical and chemical properties of this substance can open up new avenues for chemical synthesis and application, and has far-reaching significance in materials science and drug development.
    Technical Specifications & Labeling
    Today, there is a product called "Benzene, 1- (Bromomethyl) -2-Fluoro-3-Methoxy-", which is related to the technical specifications and identification (commodity parameters) of this substance, which is the weight of our research.
    Looking at its structure, bromomethyl, fluorine, and methoxy are each based on the specific position of the benzene ring. This unique composition determines its physicochemical properties. In the technical specifications, the purity must be high, and the impurity content must be strictly controlled in order to meet the needs of many uses. On the label, from the name to the warning information, it should be clear.
    This substance is used in the chemical industry, either as a raw material or as an intermediate. The technical specifications are accurate and the identification is correct, so as to ensure the safety and effectiveness of use. We should study it carefully in order to achieve a state of excellent skills and perfect quality control.
    Preparation Method
    To prepare 1 - (bromomethyl) - 2 - fluoro - 3 - methoxybenzene, the method is as follows: Prepare raw materials, fluoromethoxybenzene as a group, with bromomethane, etc. To prepare, first make fluoromethoxybenzene and bromomethane under specific catalytic conditions, according to the principle of nucleophilic substitution. This reaction needs to be controlled at a moderate temperature range, about a few degrees Celsius, and adjust the reaction time to make the two fully combine.
    After the reaction is completed, the impurities are removed by separation and purification. Separation can be used by extraction to extract the product in a suitable solvent. After distillation and recrystallization, the product can be refined to obtain pure 1- (bromomethyl) -2-fluoro-3-methoxybenzene. In this process, the catalytic mechanism is the key. The selected catalyst can promote the reaction and increase its yield. It is also necessary to carefully observe all reaction links to ensure the quality of the product.
    Chemical Reactions & Modifications
    Nowadays, there are chemical substances called "Benzene, 1- (Bromomethyl) -2-Fluoro-3-Methoxy-". Our generation is a chemical researcher to observe its chemical reactions and modifications.
    The reaction of this compound is related to its structure and characteristics. Its bromomethyl, fluorine, methoxy and other groups have their own uses in the reaction. Bromomethyl is active, or it can lead to a nucleophilic substitution reaction, so that the compound can increase its functional groups and change its properties. Fluorine atoms have strong electronegativity, which affects the polarity and reactivity of molecules, or can cause the reaction to tend to a specific direction. Methoxy groups have their electronic effects, which affect the difficulty of the reaction.
    To change the properties of this compound, the reaction conditions and the selection of reagents can be used. Variable temperature, pressure, or select specific reagents to promote their reactions, to obtain products of desired properties, or to increase stability, or to change solubility, to suit various uses. This is what chemical researchers should focus on.
    Synonyms & Product Names
    Today there is a thing called 1 - (bromomethyl) -2 -fluoro-3 -methoxybenzene, which is a chemical substance. Its synonyms and trade names are the key to our investigation.
    The synonyms of this thing are different names that reveal its chemical essence. Or according to its structural characteristics, or according to its nature and use, there are different names to express it. As for the trade name, the name chosen by the merchant in order to recognize its characteristics or seek the favor of the market is also meaningful.
    In the field of chemistry, exploring synonyms can clarify its chemical relationship and gain insight into the rules of structure and naming. And the trade name is related to business operation, see its positioning in the market.
    1 - (bromomethyl) -2 -fluoro-3 -methoxybenzene, its synonym and trade name, is the point where chemical research and commercial applications are intertwined. We should study it in detail to clarify its mysteries and explore its value.
    Safety & Operational Standards
    About 1 - (bromomethyl) - 2 - fluoro - 3 - methoxybenzene product safety and operating specifications
    Fu 1 - (bromomethyl) - 2 - fluoro - 3 - methoxybenzene, in the category of chemical products, has unique properties, related to its safety and operating standards, and should not be careless.
    First, store in a cool, dry and well-ventilated place. Keep away from fire and heat sources, this is to avoid the danger caused by heat. Because it may be flammable, there must be no open flames around. And should be stored separately from oxidizing agents, acids, alkalis, etc., must not be mixed to prevent interaction and accidents.
    As for the operation, the operator must be professionally trained and familiar with the operation procedures. Wear appropriate protective clothing, protective gloves and goggles, which are necessary to protect their own safety. The operation room needs to be well ventilated. If operating in a closed space, it should be equipped with ventilation equipment to allow harmful gases to be discharged in time.
    When taking the product, the action should be slow and stable to avoid spilling. If it is accidentally spilled, take immediate measures. Small leaks can be absorbed by inert materials such as sand and vermiculite, and placed in a suitable container to be treated. If there is a large amount of leakage, a dike should be built or a pit should be dug to contain it, and it should be transferred to a tanker or a special collector by pump, and recycled or transported to a waste treatment site for disposal.
    Furthermore, there are regulations related to transportation. It is necessary to choose suitable transportation tools according to the requirements of hazardous chemical transportation to ensure that the packaging is complete and the signs are clear. During transportation, protect against exposure to the sun, rain and high temperature.
    All of these are the specifications for the safety and operation of 1- (bromomethyl) -2-fluoro-3-methoxybenzene products. Practitioners should keep in mind and practice it earnestly to ensure the safety of themselves and the environment.
    Application Area
    "On the application field of 1- (bromomethyl) -2-fluoro-3-methoxybenzene"
    There is now a product named 1- (bromomethyl) -2 -fluoro-3 -methoxybenzene. This product has its uses in many fields. In the field of pharmaceutical development, it can be used as a key intermediate. Due to its unique structure, it can react ingeniously with a variety of compounds, helping to synthesize drugs with special curative effects. If it can participate in the synthesis path of some antibacterial drugs, it can help to resist the invasion of pathogens.
    In the field of materials science, it should not be underestimated. Or it can be used to prepare polymer materials with special properties, because of the groups it contains, or it can improve the stability and flexibility of materials. In the field of fine chemicals, it is also an important raw material, which can derive many high-value-added fine chemicals, inject vitality into the development of the chemical industry, and help related products improve quality and performance.
    Research & Development
    I am committed to the study of chemical substances, and today I am discussing the substance "Benzene, 1- (Bromomethyl) -2-Fluoro-3-Methoxy-". Its research and development are crucial in the field of chemistry.
    Initially explore its structure, analyze the arrangement and bonding of each atom, in order to clarify its characteristic origin. Then study its reaction path and explore its changes under different conditions. After repeated experiments, observe its action with various reagents, and record the phenomena and products in detail.
    The development path aims to optimize the synthesis method, hoping to obtain it with simpler steps and higher yields. Yisi expands its application and finds new opportunities in the fields of medicine and materials. Although the process is not without difficulties, adhering to the heart of research, we will be able to make progress in the research and development of this substance, and contribute to the development of chemistry.
    Toxicity Research
    Toxicological Studies
    Recently, in the field of toxicology, we have focused on the toxicology of "1 - (bromomethyl) - 2 - fluoro - 3 - methoxylbenzene". The structure of this substance is different, and the combination of bromomethyl, fluorine and methoxy may endow it with different toxicological characteristics.
    To initially observe its effect on living organisms, take all living things as a test. Looking at the route of entry into the body, it can be considered orally, percutaneously or inhaled. Oral ingestion, in the digestive system, may disturb its normal transportation and damage the mucosa of the stomach and intestines. Percutaneous penetration, may cause skin sensitivity, or penetrate deeper into the muscle tissue. If it enters through respiration, the lungs are the first to bear the brunt, the airway may be stimulated, and the alveolar function may also be damaged.
    Further explore its role at the cellular level. Or can interact with key components of the cell, such as nucleic acid, protein and the like. Bind to nucleic acid, or cause gene expression, leading to cell mutation; interact with proteins, or change their conformation, impairing their physiological functions. And its metabolites, or more toxic, are tossed around in the body and prolonged poisoning.
    Also think about its environmental toxicology. If this substance is released outside, it is involved in water, soil and air. In water or sewage sources, endangering aquatic organisms; in soil, or changing soil quality, inhibiting plant life. In conclusion, a detailed study of the toxicology of "1 - (bromomethyl) - 2 - fluoro - 3 - methoxybenzene" is essential to prevent its harm, protect life and the environment.
    Future Prospects
    In the future, I have been researching chemical substances for a long time. The current study of "Benzene, 1- (Bromomethyl) -2-Fluoro-3-Methoxy-" can be seen in the future.
    This material property is very special, and it may be of great use in many fields. It is expected that in the field of materials science, it is also expected to be turned into a good material, and the material will use new energy, such as increasing its properties and changing its characteristics.
    Furthermore, the study of the derivation of this compound is also powerful. Follow its chemical law, explore the wonders of its transformation, or get a series of new products, and expand the territory of research. I believe that in a few days, the wisdom of others will surely be able to be developed and used by the world for the benefit of life. This is the period of our researchers.
    Where to Buy Benzene, 1-(Bromomethyl)-2-Fluoro-3-Methoxy- in China?
    As a trusted Benzene, 1-(Bromomethyl)-2-Fluoro-3-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)-2-Fluoro-3-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 is the Chinese name of this compound?
    This compound is called "** Red Snow Pill **".
    Look at its prescription, refined from various rare spiritual materials. Its main medicine is the red blood spirit leaf, which is born in an extremely cold place and absorbs the spiritual charm of heaven and earth ice and snow. It can be formed after thousands of years, and has the ability to transform blood, generate muscles, and connect veins and live the soul; supplemented by the purple star stamen, which blooms on the top of the mountain and bears the brilliance of the stars. Every hundred years, it has the effect of calming the mind, calming the soul, and reconciling yin and yang; then it is accompanied by ice chalcedony jade powder, which is collected from the jade condensed by the ice chalcedony of ten thousand years.
    The effect of the Crimson Snow Pill is quite magical. Ordinary people take it, it can strengthen the body, prevent all diseases from invading, and prolong life. With it, martial artists can help them break through the bottleneck of cultivation, improve their skills, and there is no danger of going into the devil. On top of healing wounds, it is even more miraculous. No matter how many injuries, just one tablet can quickly stop bleeding and regenerate muscles, and restore vitality.
    In the past, there was a young genius with extraordinary talent, but he was killed by a rapist during an experience. He was seriously injured, his meridians were cut off, and his life was in danger. Fortunately, he was rescued by an expert, and fed with the Crimson Snow Pill to bring him back to life. Not only did his injuries heal, but his skills were even better than before, and he eventually became a generation of grandmasters, famous all over the world.
    Another immortal family was besieged by the enemy and suffered heavy casualties. The elders of the clan urgently took Chixuedan and distributed it to the injured in the clan. After the wounded took it, they quickly recovered their combat strength and fought to the death with the enemy to ensure the safety of the family.
    Therefore, Chixuedan is a rare divine medicine in the world. It has extraordinary power in strengthening the body, healing and cultivation, and is the dream of countless cultivators and mortals.
    What are its main physical properties?
    An utensil has many important physical properties. Its quality is firm and dense, like the solidity of gold and stone. When touched by hand, it is cool and smooth, like ice jade. This is because of its good thermal conductivity, it can quickly disperse and warm in the hand. Looking at its shape, it is regular and uniform, with distinct edges and corners, which shows that its structure is orderly and stable, and it is not easily deformed by external forces.
    Its density is quite large, and it is placed in water, that is, it sinks to the bottom. Due to the large content of substances in a unit volume, it shows that its texture is thick. And its hardness is very high, and unusual objects can be easily scratched, just like the strength of stainless steel, which can resist many grinding.
    And its conductivity is also unique. In some situations, such as with a weak current, its effect on current conduction, conduction or resistance, can be observed, depending on the internal microstructure of the material. This property makes it in a specific electrical structure, or can play a key role.
    Furthermore, its optical properties cannot be underestimated. When transmitting light, the light is refracted and scattered through it, showing a different state, or having a beautiful color, or showing a clear shadow, which seems to create a magical environment, which is due to its different effects on different wavelengths of light. In short, the physical properties of this object are diverse, and it has potential uses in many fields.
    What are the common methods for synthesizing this compound?
    The common synthesis methods of this compound include the following:
    One is a condensation reaction. It involves the interaction of several compounds with active functional groups under appropriate reaction conditions, and through the condensation step, new chemical bonds are formed, and then the target compound is constructed. For example, under the catalysis of acid, the condensation reaction between aldehyde and amine can occur to form imine compounds. The reaction conditions are mild, the yield is quite high, and the operation is simple. It is widely used in the field of organic synthesis.
    The second is an addition reaction. Compounds containing unsaturated bonds, such as olefins, alkynes, etc., are selected to be added with other reagents. Like the addition of olefins to halogens and hydrogen halides, specific addition products can be obtained according to the Markov rule or the anti-Markov rule. This method can effectively introduce new functional groups and lay the foundation for the construction of complex compounds.
    The other is the substitution reaction. The atoms or groups in the compound are replaced by other atoms or groups. For example, nucleophilic substitution reactions, halogenated hydrocarbons react with nucleophiles, and halogen atoms are replaced by nucleophilic groups. Such reaction conditions are diverse. According to the characteristics of the substrate and the target product, suitable nucleophilic reagents and reaction conditions can be selected to achieve the desired synthetic effect.
    In addition, rearrangement reactions are also important synthetic methods. Under certain conditions, the atoms or groups in the molecule of some compounds will be rearranged to form new compounds with different structures. Such as Beckmann rearrangement, oxime rearrangement occurs under acidic conditions to form amide compounds. This reaction can ingeniously change the structure of molecules and provide an effective way for the synthesis of compounds with special structures.
    The above methods each have their own scope of application and characteristics. When organic synthesis, it is necessary to carefully select the appropriate synthesis method according to the structure and properties of the compound in order to achieve the synthesis of the target compound efficiently and accurately.
    What fields is it used in?
    An artifact has a wide range of uses and is used in many fields.
    In the military domain, its role is extraordinary. When marching in formation, it can be used to gain insight into the enemy's reality. If you want to attack the enemy's camp at night, use this artifact to observe the distribution of the enemy's camp and sentry layout, you can plan comprehensively, avoid the enemy's eyes and ears, and win by surprise. In wartime, you can also judge the enemy's offensive potential and weak defense based on this, so as to adjust your own strategy, grasp fighter jets, and defeat the enemy to win.
    In agricultural lands, it is also quite beneficial. When planting in spring, observe the time and place, and according to the artifact, know when to sow the best seeds, and what kind of crops are suitable for local water and soil, so as to ensure abundant crops. In field management, with the help of artifacts, you can detect the signs of crop diseases and insect pests, prevent and control them in time, avoid the spread of disasters, and protect the hope of a bumper harvest.
    In the voyage, it is indispensable. In the vast sea, the direction is difficult to discern, and the artifact can guide the course so that the ship will not get lost. In the face of the changing sea surface, predict the approaching storm, find a harbor in advance to avoid, and ensure the safety of the seafaring people.
    In the industry of architecture, it is also very useful. Create palace pavilions, use artifacts to measure the height of the terrain, good and bad directions, and make the building sturdy and reasonable. When building the city and repairing the embankment, use its strength to plan and design to ensure the quality of the project and resist the disasters of the sail
    This artifact is used in military, agricultural, maritime, construction, and many other fields as a guiding light, playing a crucial role, and is truly a rare treasure.
    What are the characteristics of its chemical properties?
    The chemical properties of an element are quite unique. It is active, and it is often the first to change in many chemical reactions, just like the courage of the pioneer. In case of strong acid, it can quickly respond to it, generate hydrogen and escape, and watch its bubbles roll, like the surge of boiling soup. This is the proof of liveliness.
    And it has good reductivity. During the redox reaction, it is willing to give up its own electrons to help others get it, and it changes shape and state. If it is a strong oxidant, that is, generously donating electrons, its own valence rises sharply to form a new compound.
    Furthermore, it also has a wonderful response with water. When thrown into water, it either floats on the surface or sinks to the bottom, but it all responds to the water, either gently and gently, or violently. In addition to hydrogen production, corresponding alkalis are still produced, and the process may involve the emission of heat, causing the water temperature to rise.
    can also combine with non-metallic elements, and the two can combine to form various compounds. Or covalently linked to achieve a stable state; or ionic bonding, attracting each other by charge, to stabilize the structure.
    In compounds, its valence varies, depending on the reaction situation and object. This property makes it endlessly variable in the chemical world, participating in the construction of a diverse material world. And many of its compounds have unique properties, or have specific colors, or have unique solubility, and are used in various fields such as chemical engineering, medicine, and materials. They have made great contributions to the progress of human civilization.