1-Bromo-2-Chloro-4-Trifluoromethyl-Benzene

Linshang Chemical

Specifications

HS Code

454480

Chemical Formula C7H3BrClF3
Molecular Weight 275.45
Appearance Liquid (usually)
Color Colorless to light yellow
Odor Characteristic organic odor
Density Data depends on temperature, typically around 1.7 - 1.8 g/cm³
Boiling Point Around 180 - 190 °C
Solubility In Water Insoluble
Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, chloroform

As an accredited 1-Bromo-2-Chloro-4-Trifluoromethyl-Benzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500g of 1 - bromo - 2 - chloro - 4 - trifluoromethyl - benzene in a sealed, chemical - resistant bottle.
Storage 1 - Bromo - 2 - chloro - 4 - trifluoromethyl - benzene should be stored in a cool, dry, well - ventilated area, away from sources of heat, ignition, and sunlight. It should be kept in a tightly - sealed container to prevent leakage and vapor release. Store it separately from oxidizing agents, reducing agents, and reactive chemicals to avoid potential chemical reactions.
Shipping 1 - bromo - 2 - chloro - 4 - trifluoromethyl - benzene is a chemical. Shipping should be in accordance with hazardous chemical regulations. It must be properly packaged in suitable containers, labeled clearly, and transported by carriers licensed for such chemicals.
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1-Bromo-2-Chloro-4-Trifluoromethyl-Benzene 1-Bromo-2-Chloro-4-Trifluoromethyl-Benzene
General Information
Where to Buy 1-Bromo-2-Chloro-4-Trifluoromethyl-Benzene in China?
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Frequently Asked Questions

As a leading 1-Bromo-2-Chloro-4-Trifluoromethyl-Benzene 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 1-bromo-2-chloro-4-trifluoromethylbenzene?
1 + -Hg-2-bromo-4-triethylbenzylammonium, this is a class of compounds, each component has its own characteristics.
Mercury is a liquid metal at room temperature, toxic, volatile, and can damage nerves, kidneys and other organs when it enters the human body. And mercury has high chemical activity and can react with many substances, such as rapid synthesis of mercury sulfide with sulfur.
Bromine is a liquid non-metal, reddish-brown, with strong corrosive and irritating odor. Its chemical properties are active, and it is often used as a brominating agent in organic synthesis. It can introduce bromine atoms into organic compounds to change their properties.
Triethylbenzylammonium is a type of quaternary ammonium salt cation, which often exists in the form of salts. Quaternary ammonium salts have many surface activities and can be used as phase transfer catalysts to promote the transfer of reactants in different phases and accelerate the reaction process in heterogeneous reactions. They also have certain sterilization and disinfection effects, because they can be adsorbed on the surface of bacteria and destroy their cell membrane structure and function.
The combination of these three constitutes 1 + -mercury-2-bromo-4-triethylbenzylammonium, or due to the interaction of various components, showing unique chemical properties. Mercury ions may coordinate with the nitrogen atom of triethylbenzyl ammonium to change its chemical activity and stability; bromine ions may participate in reactions such as ion exchange, which affect the behavior of the compound in solution. At the same time, due to the toxicity of mercury, such compounds may need to be used and handled with extra caution to prevent mercury pollution and harm.
What are the main uses of 1-bromo-2-chloro-4-trifluoromethylbenzene?
1 + - + mercury - 2 + - + arsenic - 4 + - + triethylbenzyl ether, these three have their own uses in different fields.
Mercury, the chemical symbol is Hg, and it is in the state of liquid metal at room temperature. In ancient times, it was often used in alchemy. The alchemists believed that it had the magical effect of prolonging life and turning stones into gold. Although it was mostly false, the process of alchemy promoted the ancients to have more understanding and exploration of the changes in chemical substances. In the field of medicine, mercury used to be used as medicine in the past, such as light powder, which had certain detoxification, insecticidal, and expectorant effects. However, due to the toxicity of mercury, it has been used with extreme caution today. In industry, mercury is often used to make thermometers, barometers and other instruments. Due to its stable thermal expansion and contraction properties, it can accurately measure temperature and air pressure changes. However, it should be noted that mercury and its compounds are toxic, and once leaked, they can easily cause environmental pollution and human harm.
Arsenic, chemical symbol As, exists mostly in the form of sulfides in nature. In ancient times, it was often associated with alchemy, and some alchemy formulas would be mixed with arsenic-containing minerals in the hope of refining miraculous medicinal pills. In medicine, arsenic has been used to treat certain diseases. For example, in the treatment of leukemia, arsenic trioxide has achieved good results, opening up new paths for conquering such diseases. In the field of agriculture, arsenic-containing pesticides were used in the past to kill pests and ensure the growth of crops. However, due to the toxic residues of arsenic, it is more harmful to the environment and organisms, and has been gradually replaced.
4 + - + triethylbenzyl ether plays a significant role in the field of organic synthesis. It is often used as a reaction intermediate to participate in the synthesis of many organic compounds. With its unique chemical structure, it can promote various chemical reactions to occur smoothly and help synthesize target products. In the fine chemical industry, it is often used to prepare fine chemicals such as fragrances and pharmaceutical intermediates, which contribute greatly to improving product quality and enriching product types. Due to its important position in organic synthesis, chemical researchers continue to explore and optimize its synthesis process and application methods to improve production efficiency and product quality.
What are the synthesis methods of 1-bromo-2-chloro-4-trifluoromethylbenzene?
To prepare 1-bromo-2-iodine-4-trifluoromethylbenzene, the method is as follows:
First take the raw material containing benzene, and introduce trifluoromethyl into the benzene ring with appropriate reagents and conditions. This step can be used by the method of trifluoromethylation, such as using a suitable trifluoromethylation reagent, in the presence of a catalyst, electrophilic substitution reaction with benzene, 4-trifluoromethylbenzene can be obtained.
Then, this 4-trifluoromethylbenzene is brominated. Select a suitable brominating reagent, such as bromine, and under the action of a catalyst such as iron powder or iron tribromide, bromine atoms can be introduced into the benzene ring at a suitable position to obtain 1-bromo-4-trifluoromethylbenzene. This is because trifluoromethyl on the benzene ring is an intermediate locator, and bromine atoms will mainly enter its intermediate position.
Furthermore, iodization of 1-bromo-4-trifluoromethylbenzene is carried out. Usually the iodization reaction is more difficult than bromination and chlorination, and special iodizing reagents and conditions need to be selected. Iodine can be used together with suitable oxidants, such as iodine and hydrogen peroxide, under appropriate solvent and catalytic conditions, iodine atoms can be introduced into the benzene ring and in the existing bromine atom ortho-position, so as to obtain 1-bromo-2-iodine-4-trifluoromethylbenzene. Among them, because the bromine atom is an ortho-para-position group, the iodine atom is more likely to enter the bromine atom ortho-position under the influence of the existing trifluoromethyl. Through this step, the rational selection of reagents and the control of reaction conditions can achieve the synthesis of 1-bromo-2-iodine-4-trifluoromethylbenz
What are the precautions for storing and transporting 1-bromo-2-chloro-4-trifluoromethylbenzene?
1 + -Hg-2-bromo-4-triethylbenzyl ether and other substances need to be paid attention to when storing and transporting.
Mercury is a highly toxic metal. It is liquid at room temperature and is highly volatile, and the mercury vapor is particularly toxic. If inhaled into the human body, it can damage the nervous system, kidneys and many other organs. When storing, use an airtight and corrosion-resistant container to prevent mercury leakage and volatilization. The container must be placed in a cool, dry and well-ventilated place, away from fire and heat sources. Due to the increase in temperature, the volatilization of mercury will accelerate. During transportation, it is also necessary to ensure that the packaging is tight and follow strict transportation regulations for hazardous chemicals. Transport personnel should have professional protective knowledge and skills to prevent mercury leakage from poisoning people.
Bromine is highly corrosive and volatile. Its volatile gas is strongly irritating to the eyes, respiratory tract mucosa, etc. When storing, it is appropriate to use brown glass bottles, because bromine is easy to decompose when exposed to light. Bottle stoppers must be made of glass stoppers, and rubber stoppers should not be used. The edge rubber is easily corroded by bromine. The storage place should be protected from light and cool, and separated from flammable, combustible and reducing agents to prevent violent reactions. During transportation, the packaging must be firm to prevent damage to the container caused by collision. Once leaked, the strong corrosiveness of bromine can damage surrounding items, and the volatile gas is very harmful.
4-triethylbenzyl ether, although slightly less toxic than mercury and bromine, is also an organic compound and flammable. When storing, it should be kept away from fire and heat sources and placed in a well-ventilated warehouse. The temperature of the warehouse should not be too high to prevent it from volatilizing and burning. When transporting, the same attention should be paid to fire prevention. The transportation vehicle should be equipped with corresponding fire protection equipment, and the transportation personnel should be familiar with fire response methods.
All these items must strictly follow relevant regulations and operating procedures when storing and transporting, and take protective and emergency measures to ensure the safety of personnel and the environment from pollution.
What are the effects of 1-bromo-2-chloro-4-trifluoromethylbenzene on the environment and human health?
Nowadays, there are things called 1 + -hydroxyl-2-alkane-4-triethylaminobenzene. What are the implications for the environment and human health? It should be investigated in detail.
If the husband of 1 + -hydroxyl-2-alkane-4-triethylaminobenzene is dispersed in the environment, its properties may cause ecological changes. In the water, it may harm aquatic spirits and disturb their life and reproduction. Aquatic insects and algae may suffer from it. If it enters the soil, or changes the nature of the soil, it will hinder the growth of grass and trees, make the earth gradually exhausted, damage vegetation, and disrupt the ecological balance.
As for human health, this substance may be potentially dangerous. If a person takes it through breathing, or touches it through the skin, it can enter the body. Inside, or disrupt the normal order of physiology. Damage the functions of the viscera, such as the liver storing blood and the kidneys storing essence, or suffer from it, causing loss of qi and blood, and deficiency of essence and qi. What's more, it may cause various diseases, such as respiratory diseases, cough, asthma; or skin diseases, rash and itching. Long-term exposure to this substance may also increase the risk of cancer.
Therefore, it can be seen that 1 + -hydroxy- 2 -alkane-4 -triethylaminobenzene poses a hidden danger to the environment and human health, and it is necessary to prevent it. Detailed monitoring and finding appropriate ways to control it will prevent it from being a disaster in the world.