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3,5-Bis Trifluoromethyl Bromobenzene

3,5-Bis Trifluoromethyl Bromobenzene

Hongda Chemical

Specifications

HS Code

430336

Chemical Formula C8H3BrF6
Molecular Weight 329.005
Appearance Colorless to light yellow liquid
Boiling Point 182 - 184 °C
Melting Point N/A
Density 1.797 g/mL at 25 °C
Flash Point 70 °C
Solubility Insoluble in water, soluble in organic solvents like ethanol, ether
Vapor Pressure N/A
Stability Stable under normal conditions, avoid heat,明火 and strong oxidizing agents

As an accredited 3,5-Bis Trifluoromethyl Bromobenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 100g of 3,5 - bis(Trifluoromethyl)Bromobenzene in a sealed, corrosion - resistant bottle.
Storage 3,5 - bis(Trifluoromethyl)Bromobenzene should be stored in a cool, dry, well - ventilated area away from heat sources and open flames. Keep it in a tightly - sealed container to prevent vapor leakage. Store it separately from oxidizing agents, reducing agents, and other reactive chemicals to avoid potential chemical reactions.
Shipping 3,5 - bis(Trifluoromethyl)Bromobenzene is shipped in specialized, well - sealed containers. These are designed to prevent leakage, with strict adherence to chemical transportation regulations to ensure safe transit of this potentially hazardous chemical.
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3,5-Bis Trifluoromethyl Bromobenzene 3,5-Bis Trifluoromethyl Bromobenzene
General Information
Historical Development
3,5-Bis-trifluoromethylbromobenzene is an important raw material for organic synthesis. Looking back, the road to its research and development has been arduous and long. In the early years, organic chemistry was just emerging, and all kinds of technologies were not mature. It was difficult to make this product.
However, chemists of all generations have been determined and dedicated. After countless tests, the reaction conditions were repeatedly explored, and the synthesis method was improved. From the initial simple attempt, to the gradual optimization of the process. Or consider the profit and loss on the reaction reagents, or make fine improvements to the reaction apparatus.
After long-term accumulation, the synthesis technology has been improved day by day, and the yield and purity of 3,5-Bis-trifluoromethylbromobenzene have been significantly improved. Nowadays, it plays a key role in the fields of medicine, materials, etc., which are the fruits of the unremitting research of chemists of all generations.
Product Overview
Today, there is a product named 3,5-ditrifluoromethylbromobenzene. It is an organic compound, which is widely used in various fields of chemical industry. Looking at its shape, at room temperature, it is a colorless liquid with a special odor. Its properties are relatively stable, and it is also dangerous to encounter strong heat and open flames.
The preparation of this product has undergone many complicated methods. Chemical reactions are carried out with various organic reagents according to a certain order and conditions. When preparing, temperature control, pressure control and the ratio of the reactants are all important, and a slight difference in the pool will affect the yield and quality.
Its uses are many, and in the field of pharmaceutical synthesis, it can be a key intermediate and help many good medicines come out. In material science, it can also be the foundation for the research and development of new materials and increase the characteristics of materials.
When we study this thing, we need to abide by the procedures, focus on safety and accuracy, in order to explore its more potential, and contribute to the progress of chemical industry and the benefit of people's livelihood.
Physical & Chemical Properties
3,5-Ditrifluoromethyl bromide benzene is an organic compound. It has unique physical and chemical properties. Looking at its physical properties, at room temperature, it is liquid, transparent and pure in color, and has a specific odor. Its boiling point can be explored quite well, about a certain temperature, which is the key node of its gasification.
In terms of chemical properties, because it contains trifluoromethyl and bromine atoms, its reactivity is unique. Trifluoromethyl has strong electron absorption, which affects the distribution of molecular electron clouds and reduces the density of benzene ring electron clouds. Bromine atoms can participate in various reactions such as nucleophilic substitution, and can interact with many nucleophilic reagents to derive new compounds. And its stability also has characteristics, it can exist under normal conditions, but it can also undergo chemical changes under special reagents or conditions. It is widely used in the field of organic synthesis.
Technical Specifications & Labeling
Today, there are 3,5-ditrifluoromethylbromobenzene products, and their process specifications and identification (product parameters) are the key. To make this product, precise process procedures need to be followed. From the selection of raw materials, it is necessary to be pure and flawless, and no impurities are allowed. Reaction conditions, such as temperature and pressure, must be strictly controlled. If the temperature is too high or the product decomposes, if it is too low, the reaction will be slow. The same is true for pressure, which can promote a smooth reaction when appropriate. On the
label, the product parameters are listed in detail. The proportion of ingredients is accurate to the decimal place; there are also descriptions of properties, observing its color state, and smelling its smell. And there are storage requirements, moisture-proof and light-proof items, all of which need to be clear. These process specifications and labels are the cornerstone of ensuring product quality, and they are indispensable in order to make 3,5-bistrifluoromethyl bromide benzene fully capable in various applications.
Preparation Method
The preparation of 3.5-ditrifluoromethylbromobenzene is related to the raw materials and production process, reaction steps and catalytic mechanism. The selection of raw materials needs to be carefully selected to achieve the best reaction effect. The production process is also the key, and all links need to be strictly controlled.
At the beginning of the reaction, select a specific reagent, and mix it at a suitable temperature and pressure according to the precise ratio. During the reaction process, close monitoring and timely adjustment of conditions according to changes. This reaction is carried out step by step, and each step has unique conditions and purposes. It is orderly and gradual.
In terms of catalytic mechanism, high-efficiency catalysts are selected to accelerate the reaction and improve the yield. Catalyst activity and selectivity have a profound impact on product purity and yield. In preparation, various factors are interrelated and need to be taken into account in order to obtain high-quality 3,5-bis-trifluoromethyl bromide benzene, which lays a solid foundation for subsequent applications.
Chemical Reactions & Modifications
The way of chemical engineering is to focus on reaction and modification. Today, 3,5-ditrifluoromethyl bromide is a compound. Its reaction path may involve nucleophilic substitution, and halogen bromide is active, which can lead to nucleophilic reagents, such as alcohols and amines, to form new compounds and expand its application domain.
As for modification, or adjust its electron cloud density, introduce a conjugate system to increase its stability and reaction selectivity. Or change its spatial structure, borrow the resistance effect, and control the direction of the reaction. In this way, 3,5-bis-trifluoromethyl bromide can be used in materials, medicine and other fields to develop its extraordinary capabilities, add luster to the chemical industry, and open up new frontiers for follow-up research, waiting for our generation of chemists to dig deep and benefit the world.
Synonyms & Product Names
I have heard that there is a thing named 3,5-ditrifluoromethyl bromobenzene. In my chemical research, I often encounter synonymous names and commodity names. The name of this thing is synonymous, or it is called according to its chemical properties and structural characteristics. If it is based on its molecular structure, there is ditrifluoromethyl linked to bromobenzene, or it has other names to express its characteristics.
As for the name of the product, the merchant may call it another name for marketing and positioning reasons. Although these names are different, they actually refer to the same thing. When I am researching, I need to carefully investigate its synonymous name and the name of the product, in order to prevent confusion and mislead the process and conclusion of the experiment. Only through discernment can we study chemistry, move freely, explore the truth, and contribute to the progress of chemistry.
Safety & Operational Standards
Specifications for the safety and operation of 3,5-bis-trifluoromethylbromobenzene
Fu 3,5-bis-trifluoromethylbromobenzene is an important substance in chemical research. Its unique nature is related to the safety and effectiveness of the experiment, so it is necessary to specify its safety and operation specifications.
For storage, it is necessary to choose a cool, dry and well-ventilated place. This substance is sensitive to temperature and humidity, and high temperature and humidity can easily cause it to change, and even cause danger. It should be stored in a sealed container to avoid contact with air and water vapor.
When operating, the experimenter should wear strict protective equipment. Wear special gloves, which can resist the erosion of this substance; wear protective clothing, which can prevent it from contaminating the body; goggles are also indispensable to prevent it from splashing into the eyes.
When taking it, the movement should be slow and careful. Walk in the fume hood to disperse the volatile gas in time and avoid accumulation in the room. The control of the quantity must be accurate. According to the needs of the experiment, take it with an appropriate device.
If you accidentally touch it, rinse it with plenty of water quickly. If it touches the skin, wash it and observe it. If there is any discomfort, seek medical treatment. If it enters the eye, rinse it and go to the medical office urgently without delay.
After use, the residue should not be discarded at will. According to the relevant regulations, classified disposal, pollution-free environment, and avoid safety hazards.
In short, the handling of 3,5-ditrifluoromethylbromobenzene must comply with safety and operating standards to ensure the smooth operation of the experiment, the safety of personnel, and the environment.
Application Area
3,5-Bis-trifluoromethylbromobenzene is also an organic compound. It is widely used in the field of medicinal chemistry and is often used as a raw material for the creation of new agents. Based on this substance, specific drugs can be prepared to treat various diseases, such as new drugs for treating serious diseases, or have unique effects.
In the genus of material science, it also shows its ability. With it participating in the reaction, materials with special properties can be prepared, or with high stability, or excellent electrical conductivity, which is useful in electronic devices and so on.
In pesticide chemistry, it is also indispensable. It can be used to synthesize high-efficiency pesticides, protect crops from the invasion of pests, and ensure the abundance of five grains, which is the safety of people's livelihood. This is where 3,5-bis-trifluoromethyl bromide benzene is used in various fields.
Research & Development
I am dedicated to the research of 3,5-bis (trifluoromethyl) bromobenzene. This compound has great potential in the field of organic synthesis, and its unique structural properties have led me to investigate in depth.
At the beginning, its synthesis path was explored, and after many attempts, the ratio of raw materials and reaction conditions were finely regulated. In case of the dilemma of poor reaction yield, I was not discouraged and tried repeatedly.
Afterwards, study its reactivity and gain insight into its performance in different chemical reactions. After long-term research, the results were finally obtained, and the best reaction situation was clarified, paving the way for subsequent application.
From now on, 3,5-bis (trifluoromethyl) bromobenzene may have broad application prospects in materials science, drug research and development, etc. I should continue to study it, hoping to expand its application scope, promote its development, and contribute to the academic and industrial circles.
Toxicity Research
There is a chemical substance today, named 3,5-ditrifluoromethylbromobenzene. As a chemical researcher, I am dedicated to the study of its toxicity. The appearance of this substance has its own characteristics, but the investigation of toxicity should not be ignored.
Experiments have shown that its effect on living organisms is quite complex. At the cellular level, it affects the metabolism and proliferation of cells. It enters the animal body, or causes changes in the function of organs. Although it is not fully understood, the clue of toxicity has emerged.
The way of investigation, many methods are used. The toxicity is initially determined by cell experiments, and then the harm is studied in animal models. Observe its impact on the biochemical indexes and tissue structure of the body. It is hoped that its toxicity will be known in detail, so that when the world uses this substance, it can provide accurate prevention, avoid potential dangers, and protect life, health and environmental safety.
Future Prospects
I have tried to study chemical substances, and now looking at 3,5-ditrifluoromethylbromobenzene, I feel that its future prospects are quite broad. This product has unique properties and has potential in many fields.
In the field of medicine, it may contribute to the creation of new drugs. The differences in its structure may help chemists find new active ingredients to treat various diseases.
In the field of materials, it is expected to become the basis for new materials. Because of its fluorine-containing structure, it may give materials special properties, such as weather resistance, corrosion resistance, etc.
I believe that with time, chemists will study its properties in detail and make good use of its capabilities, and 3,5-ditrifluoromethyl bromide will surely shine in the future and make outstanding contributions to various fields.
Where to Buy 3,5-Bis Trifluoromethyl Bromobenzene in China?
As a trusted 3,5-Bis Trifluoromethyl Bromobenzene 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 3,5-Bis Trifluoromethyl Bromobenzene 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 main uses of 3,5-bis (trifluoromethyl) bromobenzene?
3,5-Bis (triethoxypropyl) caprolactam, this substance is widely used and has important effects in many fields.
In the field of material science, it is often used as an additive. Adding polymer materials can improve the properties of materials. If plastics are added, the flexibility and impact resistance of plastics can be improved, making plastic products more durable and not easily damaged. It is of great significance in the manufacture of daily necessities and industrial components.
In the coating industry, it can enhance the adhesion and weather resistance of coatings. Objects coated with coatings containing this ingredient can better resist external environmental erosion, such as sun exposure, rain exposure, wind and sand, etc., prolong the service life of the coating, maintain the appearance and performance of the coated object, and have high application value in paints in construction, automotive and other fields.
In the field of medicine, due to its special chemical structure and properties, it may have potential medicinal value. It can be used as a drug carrier to assist in the precise delivery of drugs, improve drug efficacy, reduce side effects, and provide new ways and possibilities for drug research and development and preparation improvement.
In the field of catalysis, it can also play a unique role. Or it can be used as a catalyst to participate in specific chemical reactions, accelerate the reaction rate, improve the reaction efficiency and selectivity, help chemical production optimize the process, reduce costs, and improve product quality.
In summary, 3,5-bis (triethoxypropyl) caprolactam plays an important role in materials, coatings, medicine, catalysis, and other fields, promoting technological progress and development in various industries.
What are the preparation methods of 3,5-bis (trifluoromethyl) bromobenzene?
To prepare 3% 2C5-bis (triethoxy) benzonitrile, the method is as follows:
Prepare all the required substances, such as benzonitrile, triethoxy reagents, and suitable solvents, such as anhydrous organic solvents, etc., which are the basis for preparing this substance.
In a clean reactor, in a precise measure, according to a certain proportion, put benzonitrile and triethoxy reagents in it. The exact ratio is related to the effectiveness of the reaction, so you should not be careless. After the injection is completed, slowly inject an appropriate amount of solvent, so that the substances can be evenly dispersed and fused.
Next, adjust the temperature of the reactor to gradually heat up. The rate of heating must also be appropriate. If it is too fast, the reaction may be excessive, and if it is too slow, it will take too long. When the temperature reaches a specific range, maintain it and make the reaction proceed smoothly. During this period, closely observe the state of the reaction, observe the change of color, the generation and death of bubbles, etc.
After the reaction is completed, wait for it to cool down. After that, the separation technique can be performed, and the impurities can be removed by filtration, distillation, etc., to obtain the desired product. When filtering, choose the appropriate filter material to distinguish the solid from the liquid; when distilling, the temperature control is accurate to make the product pure and precipitated. Finally, the purity of the product is tested by a fine method to see if it meets the standard of 3% 2C5 -bis (triethoxy) benzonitrile. If the standard is not met, the refining method can be repeated according to the situation until a pure product is obtained. In this way, 3% 2C5 -bis (triethoxy) benzonitrile is prepared.
What is the market price of 3,5-bis (trifluoromethyl) bromobenzene?
3,5-Bis (triethoxysilyl) benzene, the price of this product in the market often changes due to many reasons. The price difference may be due to the price of the raw materials, the difficulty of the process, the amount of supply and demand, etc.
If the raw materials are easy to obtain and affordable, the process is mature and simple, and the supply is excessive, the price may be low. On the contrary, if the raw materials are rare and difficult to harvest, the price will be high; the process is complicated, time-consuming and labor-intensive; and there are many people in demand and few suppliers, the price will be high.
In today's market, the price of this product is between hundreds of gold and thousands of gold per kilogram. However, the market situation changes rapidly, and the price also changes. Merchants are in the city, often observing changes in time to make profits. Or because of new technologies, the production increases and the cost decreases, and the price also decreases; or because of changes in the situation, the raw materials are scarce and the prosperity is sought, and the price rises. Therefore, if you want to know the exact price, you need to consult Jia people in the cities, or watch the real-time news of the market situation, you can get it.
What are the precautions for storing and transporting 3,5-bis (trifluoromethyl) bromobenzene?
3% 2C5 -Bis (triethylamino) pyridine, there are many things to pay attention to when storing and transporting this substance.
First, store it in a cool, dry and well ventilated place. If the environment is humid, water vapor may react with the substance and cause it to deteriorate. And if the storage temperature is too high, or the stability of the substance is affected, there is even a risk of dangerous reactions. Furthermore, keep away from fire and heat sources. This substance may be flammable, and it is easy to cause combustion in case of open flames and hot topics, endangering storage safety. It should also be stored separately from oxidants and acids, etc., because the chemical properties of the substance are active, contact with oxidants and acids, or trigger violent chemical reactions, resulting in serious consequences.
As for transportation, the transportation vehicle must ensure that the vehicle is in good condition and has reliable protective measures. The vehicle must be equipped with the corresponding variety and quantity of fire equipment and leakage emergency treatment equipment. During transportation, it should be protected from exposure to the sun, rain, and high temperature. When loading and unloading, the operator should load and unload lightly, and it is strictly forbidden to drop and heavy pressure to avoid material leakage caused by package damage. During transportation, follow the specified route and do not stop near densely populated areas and important facilities. In the event of a leak, personnel from the contaminated area of the leak should be quickly evacuated to a safe area and quarantined to strictly limit access. Emergency responders should wear self-contained positive pressure breathing apparatus and anti-toxic clothing, and do not come into direct contact with the leak. In the case of a small leak, you can mix sand, dry lime or soda ash and collect it in a dry, clean, covered container. In the case of a large leak, build a dike or dig a hole to contain it, cover it with foam to reduce steam disasters, and then transfer it to a tanker or a special collector for recycling or transportation to a waste treatment site for disposal.
What are the physical and chemical properties of 3,5-bis (trifluoromethyl) bromobenzene?
3,5-Bis (triethoxymethyl) furan is an organic compound with special physical and chemical properties. The following are the properties:
Physical properties
1. ** Appearance **: Under normal conditions, or a colorless to light yellow transparent liquid, with clear quality and fluidity. Its color and state may vary slightly due to purity and impurities.
2. ** Odor **: emits a weak and special odor, not pungent and foul, but also has a unique smell, which can be detected in specific environments.
3. ** Solubility **: In organic solvents such as ethanol, ether, and acetone, it has good solubility. Because the molecular structure is similar to that of organic solvents, it can form intermolecular forces with organic solvent molecules, such as van der Waals forces and hydrogen bonds, which help them disperse and dissolve. The solubility in water is not good, because its molecular polarity is relatively small, its ability to form hydrogen bonds with water is weak, and the hydrophobic group affects it, making it difficult to dissolve in water.
4. ** Boiling point and melting point **: The data such as boiling point and melting point are determined by the intermolecular forces and the relative molecular mass. Because there is a certain van der Waals force between molecules, and the relative molecular mass affects the molecular motion, it has a specific melting boiling point. However, the exact value needs to be accurately determined by experiments.
Chemical properties
1. ** Stability **: Under normal conditions, there is a certain chemical stability. However, under extreme conditions such as strong acid, strong base or high temperature, the structure may change. Under the catalysis of strong acid and strong base, the structure of the furan ring and the ethoxy methyl group may undergo reactions such as hydrolysis and ring opening, which affect its stability.
2. ** Reactive activity **
- ** Substitution reaction **: In the molecule, the hydrogen atom on the ethoxy methyl group may have a certain activity, and under appropriate catalyst and reaction conditions, it can be replaced by other atoms or groups.
- ** Oxidation Reaction **: Although it is not easily oxidized by oxygen in the air, when encountering strong oxidants, such as potassium permanganate, the furan ring or ethoxy methyl can be oxidized, resulting in structural and property changes.
- ** Condensation Reaction **: With the activity of ethoxy methyl, it can condensate with compounds containing functional groups such as active hydrogen or carbonyl to form new carbon-carbon or carbon-heteroatom bonds and derive new organic compounds.