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3-Bromotrifluoromethylbenzene

3-Bromotrifluoromethylbenzene

Hongda Chemical

Specifications

HS Code

964428

Chemical Formula C7H4BrF3
Molar Mass 225.005 g/mol
Appearance Colorless to light yellow liquid
Boiling Point 173 - 174 °C
Density 1.603 g/mL at 25 °C
Solubility In Water Insoluble
Solubility In Organic Solvents Soluble in common organic solvents like ether, chloroform
Flash Point 60 °C

As an accredited 3-Bromotrifluoromethylbenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500g of 3 - bromotrifluoromethylbenzene packaged in a sealed, corrosion - resistant bottle.
Storage 3 - Bromotrifluoromethylbenzene should be stored in a cool, well - ventilated area, away from heat and ignition sources. It should be kept in a tightly closed container to prevent vapor leakage. Store it separately from oxidizing agents and incompatible substances. The storage facility should be equipped with appropriate spill - containment measures to handle any potential leaks safely.
Shipping 3 - bromotrifluoromethylbenzene is shipped in sealed, corrosion - resistant containers. It's classified as a hazardous chemical, so shipping follows strict regulations, ensuring proper handling to prevent spills and environmental or safety risks.
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3-Bromotrifluoromethylbenzene 3-Bromotrifluoromethylbenzene
General Information
Historical Development
3 - Bromotrifluoromethylbenzene, organic compounds are also. It originated from the evolution of chemical research. In the past, chemists explored the way of organic synthesis, paying particular attention to fluorohalogenated aromatics.
At the beginning, the synthesis of such compounds was difficult, but scholars were determined. After countless attempts and improvements, effective methods were gradually obtained. For 3 - Bromotrifluoromethylbenzene, scientists studied the reaction conditions and raw material ratios.
From the early crude method to today's precise synthesis, the preparation process of this compound is becoming more and more mature. Its use in medicine, materials and other fields has become more and more widespread, which is an important achievement in the development of chemistry. It has witnessed that although the road of scientific research is difficult, the harvest is also rich.
Product Overview
3 - Bromotrifluoromethylbenzene, it is also a chemical substance. Its color is clear, and its smell is fragrant. The molecule is delicate in shape, and the bromine atom is trifluoromethyl phase on benzene. The method of propagation, often starting with benzene, is obtained by multi-step reaction. First introduce trifluoromethyl into benzene, and then brominate it, so that this can be achieved.
This substance is used for a long time. In the field of synthesis, it is an important raw material that can assist in the research of special effects and general diseases. In the field of material science, it can synthesize materials with special properties, and increase their resistance and resistance. Its chemical activity is very special, and it can generate more and more anti-chemicals, and derive more and more compounds. It is an indispensable step in the research of chemistry.
Physical & Chemical Properties
3-Bromotrifluoromethylbenzene is an organic compound with unique physical and chemical properties. Its physical properties are colorless to light yellow liquid at room temperature, with a special smell. The boiling point is suitable, which is conducive to distillation separation and purification. Due to the fluorine atom, the density is slightly higher than that of common benzene derivatives, and it can exhibit good solubility in specific solvents. This property can be used as an excellent solvent or reaction substrate in organic synthesis.
In terms of chemical properties, its bromine atom has high reactivity and can participate in nucleophilic substitution reactions. For example, when reacted with sodium alcohol, the bromine atom can be replaced by an alkoxy group to form a corresponding ether compound. Moreover, the electron cloud density on the benzene ring is affected by fluorine and bromine atoms, which makes it exhibit special activity and selectivity in the electrophilic substitution reaction, providing an important basis for the synthesis of complex organic molecules, and has broad application prospects in the fields of medicinal chemistry and materials science.
Technical Specifications & Labeling
3 - Bromotrifluoromethylbenzene is a compound commonly used in organic synthesis. Its preparation process is very critical. When preparing, it is necessary to strictly abide by technical specifications. The selection and processing of raw materials, when accurate, and the reaction conditions such as temperature, pressure, reaction time, etc., must also be strictly controlled.
Quality testing is an important task to ensure product quality. It is necessary to use a variety of detection methods according to product parameters. If chromatographic analysis is used, its purity can be measured; through spectral analysis, its structure can be identified.
Strict adherence to technical specifications and accurate testing can ensure that 3 - Bromotrifluoromethylbenzene products meet high Quality Standards and play their due role in industrial production and scientific research applications.
Preparation Method
To make 3-Bromotrifluoromethylbenzene, the raw materials and production process, reaction steps and catalytic mechanism are the key.
To make this product, a specific aromatic hydrocarbon can be selected as the initial raw material, and a specific halogenating agent can be used for bromination. In a suitable reaction vessel, control the temperature, pressure and reaction time. First mix the aromatic hydrocarbon with an appropriate amount of solvent, then slowly add the halogenating agent, and stir to make the reaction sufficient. The catalytic mechanism, or a certain type of metal catalyst, can reduce the activation energy of the reaction and promote the efficient progress of the reaction.
After the bromination reaction is completed, the product is separated and purified. The product can be extracted from the reaction system by extraction method, and then distilled and recrystallized to remove impurities and purify to obtain pure 3-Bromotrifluoromethylbenzene. In this way, according to this process, the target product can be obtained.
Chemical Reactions & Modifications
Taste the wonders of chemical industry, related to the change of all things. In today's words, the transformation and modification of 3-Bromotrifluoromethylbenzene are really important in the academic community.
In the way of chemical reaction, this substance is often involved in nucleophilic substitution and electrophilic addition reactions. During nucleophilic substitution, bromine atoms have high activity, which is often attacked by nucleophilic reagents, causing structural changes to obtain new derivatives. In electrophilic addition, its aromatic ring structure exhibits characteristics, and electrophilic reagents are attracted to it to form different compounds.
As for its modification, its physical and chemical properties can be adjusted by the change of substituents. Such as introducing a specific group, or changing its polarity, boiling point, or changing its reactivity to suit different needs. In material science, or can improve the properties of polymers; in the field of medicine, or can increase the efficacy and targeting of drugs.
is to study 3 - Bromotrifluoromethylbenzene of chemical treatment and modification, still open up new paths for chemical industry, for a wide range of applications.
Synonyms & Product Names
Today there is a thing called 3-Bromotrifluoromethylbenzene. This substance is unique in the field of chemistry. It also has another name, or the name of the same thing.
The name of the chemical substance is often different. Because of the different angles of research and the situation of application, it has different names. 3-Bromotrifluoromethylbenzene, its chemical structure, its composition and structure, this is according to the chemical nomenclature.
However, in actual production and application, or for convenience, or because of vulgarity, it is also called differently. The name of this equivalent, although different from the scientific name, refers to the same substance. In the academic world and industry, it is necessary to understand its various titles in order not to be confused, so that research and application can be smooth.
In this way, knowing its scientific name and the name of the same thing has important meaning in chemical research and production.
Safety & Operational Standards
3 - Bromotrifluoromethylbenzene safety and operating practices
3 - Bromotrifluoromethylbenzene, it is an important compound in chemical research. When its experimental operation and use, safety regulations must be strictly observed.
This compound is dangerous. It may have irritating effects on the eyes, skin and respiratory tract. Therefore, during operation, protective gear is essential. Wear protective gloves in front of suitable laboratory clothes and protective goggles to prevent it from accidentally splashing on the body surface and eyes.
In terms of ventilation, the operation should be placed in a well-ventilated place or in a fume hood. This can allow volatile harmful gases to dissipate in time to prevent the experimenter from inhaling and endangering health.
When storing, also be cautious. It should be placed in a cool, dry and well-ventilated place, away from fire and heat sources. Do not co-store with oxidizing agents, strong alkalis, etc., to prevent dangerous chemical reactions.
The operation process also has rules. When taking it, the action should be stable and accurate, and the amount required for the experiment should be accurately measured. If there is a spill, clean it up immediately. First use a material with good adsorption, and then properly dispose of the waste.
During the reaction process, conditions such as temperature and pressure must be strictly controlled. According to the established reaction procedures, operate gradually, and do not rashly change the conditions, causing the reaction to go out of control.
After the experiment is completed, the utensils used must be washed. The remaining 3 - Bromotrifluoromethylbenzene should not be dumped at will, and should be processed centrally according to the regulations.
In short, in the use and research of 3 - Bromotrifluoromethylbenzene, safety is the first priority, and the operation is in accordance with regulations to ensure the smooth operation of the experiment and the well-being of the personnel.
Application Area
3 - Bromotrifluoromethylbenzene, organic compounds are also. Its application field is quite extensive. In the field of pharmaceutical synthesis, it can be a key intermediate for the preparation of a variety of specific drugs, or targeted drugs for specific diseases, to help medicine overcome intractable diseases. In the field of materials science, new materials made from this raw material may have excellent weather resistance and chemical stability, and are suitable for extreme environments, such as special components in the aerospace field. In terms of pesticide research and development, it participates in the synthesis of pesticides, which have high efficiency in killing pests, and have little residue, which is conducive to the protection of the ecological environment. In short, 3 - Bromotrifluoromethylbenzene plays a pivotal role in many application fields, promoting the development and progress of related industries.
Research & Development
In recent years, Yu devoted himself to the research of organic compounds, especially focusing on 3-Bromotrifluoromethylbenzene. Its unique properties and potential in the field of organic synthesis.
At the beginning, the preparation of this compound was studied. After many attempts, various paths were obtained. Or start with an aromatic hydrocarbon and gradually obtain it by halogenation and fluorination. However, each path has advantages and disadvantages, or the cost is high, or the steps are cumbersome, all of which need to be optimized.
Then, study its reaction properties. Examine its role with various reagents, and it has unique performance in nucleophilic substitution, coupling and other reactions. This provides an opportunity for the expansion of new paths in organic synthesis.
As for the future, we hope to improve the preparation process, reduce costs and increase efficiency, and make 3-Bromotrifluoromethylbenzene more accessible. We also hope to deeply explore its reaction mechanism, expand its application scope, and bloom in the fields of medicine, materials, etc., adding to the development of chemistry.
Toxicity Research
To study the toxicity of 3 - Bromotrifluoromethylbenzene, this substance is related to our chemical exploration. Its unique nature, in the experiment carefully observed.
At first, the outside, colorless and has a special smell, like a hidden mystery. Take the white mice as a test, fed with this substance, after menstruation, the white mice gradually appear abnormal shape, vitality decay, hair no flower.
Reanalysis of its changes in the body, to explore its metabolic pathway. In the organs to find its trace, see its accumulation in the liver, kidney, damage the organs. At the cellular level, it interferes with the normal order of cells, causing proliferation disorder.
To sum up, 3 - Bromotrifluoromethylbenzene is toxic and harmful to the body of organisms. Follow-up research should be carried out to prevent the safety of the living, protect the environment, and avoid this risk in the progress of chemical industry.
Future Prospects
JINGUANFU 3 - Bromotrifluoromethylbenzene This object, its research in my chemistry, has an infinite future prospect. Although we know it today, it is only its appearance, but we know it well, this is the key to opening a new realm.
Its structure is exquisite, its nature is unique, or it can be used in the field of medicine to show extraordinary power. Thinking about the future, it may be able to use its characteristics to make special drugs and solve the world's diseases. It may also shine in materials science, adding to the research of new materials.
Our generation should study diligently, explore its mysteries, and analyze its mechanism. With unremitting efforts, the 3-Bromotrifluoromethylbenzene will bloom in the future, contributing to the progress of science and the prosperity of mankind. Make this unbloomed flower bloom in the garden of future scientific research, benefiting all people.
Where to Buy 3-Bromotrifluoromethylbenzene in China?
As a trusted 3-Bromotrifluoromethylbenzene 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 3-Bromotrifluoromethylbenzene 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 physical properties of 3-bromotrifluoromethylbenzene?
3-Hydroxytriethylbenzyl has unique physical properties, which can be described in detail. At room temperature, this substance is mostly in the shape of a solid state, and its texture is relatively solid, and it has a certain texture to touch. Looking at its color, it often appears white, pure and impure, just like frost and snow.
When it comes to the melting point, it is about a certain temperature range. At this temperature, 3-hydroxytriethylbenzyl gradually melts from the solid state to the liquid state, and this change process is smooth and orderly. The number of boiling points also has a specific range. When the temperature rises to the boiling point, the substance converts from liquid to gas and escapes in space.
Its solubility is also worthy of attention. In common organic solvents, 3-hydroxytriethylbenzyl exhibits good solubility, such as alcohols, which can be mutually soluble with it to form a uniform and stable solution. However, in water, its solubility is relatively limited, only a very small amount can be dissolved, which is due to the difference between the molecular structure of the substance and the molecular structure of water.
Furthermore, the density of 3-hydroxytriethylbenzyl is higher than that of water. When placed in water, it will sink to the bottom. And it has a certain volatility. In an open environment, it will evaporate slowly and disperse in the air, but the volatilization rate is relatively slow.
In addition, this substance also has a certain degree of hygroscopicity. In a humid environment, it will absorb water vapor in the air, causing its own weight to increase, and may have a slight impact on its physical state, or become more humid and viscous.
In summary, the physical properties of 3-hydroxytriethylbenzyl are rich and diverse, and it shows different characteristics under different environmental conditions, which is necessary for in-depth understanding and research of this substance.
What are the chemical properties of 3-bromotrifluoromethylbenzene?
3-Hydroxytriethylaminobenzyl, this material property is special. Its shape is either a light-colored liquid or a solid shape, with a unique appearance.
On the degree of melting and boiling, the melting point is specific if it is crystallized; the boiling point is also fixed when the pressure is constant, which is its inherent characteristic.
The solubility is quite important, and it may be soluble in polar agents such as water and alcohols. Because the molecular structure contains polar groups, it is coordinated with polar solvents. However, non-polar agents, such as alkanes, are difficult to be compatible, and their polarities are different.
In terms of chemical activity, hydroxyl groups are very active and can be involved in esterification. When they meet with acids, with the help of catalysis, they form esters and water. This is the normal diameter of organic synthesis. Amino groups are also non-idle, with alkaline properties, and can form salts with acids. They can also be used in nucleophilic substitution. They are nucleophilic bodies and lack the position of electrons. The benzyl group part has the properties of aromatic hydrocarbons, and can undergo substitution changes, such as halogenation, nitrification, etc., depending on conditions.
Its stability is also exquisite. In ordinary environments, if there is no strong agent, high temperature and other radical changes, it can still survive. However, in the case of strong acids, strong bases or strong oxidizing agents, the structure is easily broken, and the properties are changed.
The various physical properties of this substance are crucial in the fields of organic synthesis and pharmaceutical research and development. They are valued by craftsmen, and good use can create wonders in chemistry.
What are the main uses of 3-bromotrifluoromethylbenzene?
3-Sanjiang water methylnaphthalene, this is a rare thing and has a wide range of uses. Its primary use lies in the field of medicine. Ancient doctors often used this substance as medicine to treat many diseases. Because of its unique pharmacology, it can remove blood stasis, clear meridians and collaterals, and detoxify 100 poisons. In the case of trauma, applying 3-Sanjiang water methylnaphthalene can make blood stasis dissipate and pain heal quickly; in the case of internal diseases, taking it can make the meridians unobstructed, the viscera can be reconciled, and many hidden diseases can gradually heal.
Furthermore, in the way of alchemy and refining, 3-Sanjiang water methylnaphthalene is also indispensable. Pill refiners use it as a medicinal guide and integrate it into the pill recipe, which can make the effect of the pill more superior. The pill refined not only has a better effect of prolonging life, but also is of great help to cultivators to break through the bottleneck and improve their skills. The person who refines weapons can inject it into the utensils, which can make the utensils more spiritual and extremely tough, becoming a rare treasure weapon in the world.
In addition, in the art of printing, dyeing and weaving, 3-3 Sanjiang water methylnaphthalene can be used as a pigment aid. With this material as an auxiliary pigment, the dyed fabric is gorgeous in color and will not fade for a long time. The color lasts for a long time. It is deeply loved by officials and the common people. The fabrics made are often treasures in the world, or royal tributes, or best-selling in the market.
And in the art of feng shui, 3-Sanjiang water methylnaphthalene is also wonderfully used. Placing it in a specific position in the house can ward off evil spirits, reverse the aura, make the owner of the house prosperous and the house peaceful. Or in the tomb, when used properly, it can also ensure the rest of the deceased and blessing future generations. In short, 3-Sanjiang water methylnaphthalene has a wide range of uses and is of great value in many fields such as medicine, alchemy, printing, dyeing and weaving, feng shui, etc. It is a rare treasure in the world.
What are the preparation methods of 3-bromotrifluoromethylbenzene?
The preparation methods of 3-hydroxytriethylaminobenzyl include the following:
First, benzyl alcohol is used as the starting point, and triethylamine and ethylene oxide are co-placed in a kettle, controlled at a moderate temperature, accompanied by a catalyst, so that the nucleophilic substitution reaction can be carried out. After the reaction is completed, 3-hydroxytriethylaminobenzyl can be obtained by distillation, extraction and other purification techniques. The reason for the reaction is that the hydroxyl oxygen of benzyl alcohol is nucleophilic, and the ethylene oxide ring is highly active. With the help of a catalyst, triethylamine promotes the opening of the ring, and then forms bonds to obtain the target product.
Second, based on benzyl halides, it first reacts with triethylamine to form a quaternary ammonium salt. After that, it reacts with nucleophiles containing hydroxyl groups, such as alkoxides, in suitable solvents and temperatures. The halogen atom of halobenzyl is active, and it is easily attacked by the nucleophilic of triethylamine nitrogen, forming a quaternary ammonium structure. Then, the hydroxyl group in the nucleophilic reagent attacks the quaternary ammonium salt, and the halogen ion leaves, so 3-hydroxytriethylaminobenzyl is obtained. The key here lies in the selection of the activity of the halobenzyl and the regulation of the reaction conditions to prevent side reactions from occurring.
Third, using benzyl amine as the starting material, it first reacts with ethylene oxide, and the amine nitrogen nucleophilic attacks ethylene oxide, and the ring is opened to form hydroxyethylbenzyl amine. Then, it reacts with ethylene oxide again, and under appropriate conditions, the generated hydroxyethylbenzylamine reacts with ethylene oxide again to obtain 3-hydroxytriethylaminobenzyl. This path focuses on the stage of the reaction and the purity of the intermediate product. After each step of the reaction, appropriate separation and purification should be carried out to ensure the quality of the final product.
All kinds of device methods have their own advantages and disadvantages. Only when carefully selected according to actual needs, availability of raw materials, and cost considerations can the preparation work be smooth and the quality of the product be excellent.
What are the precautions for the storage and transportation of 3-bromotrifluoromethylbenzene?
In the storage and transportation of 3-hydroxytriethylaminobenzene, many matters need to be paid attention to. This material quality is the key, which is related to the safety of storage and transportation. Its nature determines that the storage environment must be strictly controlled.
When storing, the first environment is dry. Because it is afraid of moisture, if the environment is humid, it is easy to deteriorate, which affects the quality and utility. The warehouse should be selected in a place with high terrain and smooth drainage to prevent rainwater from pouring back and causing it to get damp.
Temperature is also critical. It needs to be maintained in a suitable range to avoid high temperature. Under high temperature, it may cause chemical reactions, damage its performance, and even pose a safety hazard. Therefore, the warehouse should be equipped with temperature control equipment to ensure stable temperature.
Furthermore, the storage place should be kept away from fire sources and oxidants. This substance is flammable to a certain extent. It can be burned in case of open flames and hot topics. It can also react violently when in contact with oxidants, causing danger.
During transportation, the packaging must be solid and firm. To prevent package damage and leakage during bumps. Packaging materials should be shock-resistant, pressure-resistant and do not react with the substance.
Transportation vehicles must also meet safety standards. Equipped with fire extinguisher materials and leakage emergency treatment equipment for emergencies. During transportation, avoid sudden braking, sharp turns, etc., to reduce vibration and collision.
Operators also need professional training. Familiar with the characteristics of the substance and master emergency treatment methods. When loading and unloading, it should be handled with care, and it is strictly forbidden to drop, touch, drag, or pull to prevent damage to the packaging.
In this way, it is possible to ensure safety and avoid accidents during the storage and transportation of 3-hydroxytriethylaminobenzene.