Benzene,(Chloromethyl)Ethyl

Linshang Chemical

Specifications

HS Code

658110

As an accredited Benzene,(Chloromethyl)Ethyl factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 1 - kg bottle of (chloromethyl)ethyl benzene, well - sealed for chemical storage.
Storage **Storage for (Chloromethyl)ethylbenzene** (Chloromethyl)ethylbenzene should be stored in a cool, well - ventilated area, away from heat sources and open flames as it is flammable. Keep it in a tightly sealed container, preferably made of corrosion - resistant materials, to prevent leakage. Store it separately from oxidizing agents and reactive chemicals to avoid potential dangerous reactions. Ensure proper labeling for easy identification and safety compliance.
Shipping "(Chloromethyl)ethylbenzene" is a chemical. Shipping should follow strict regulations. It must be properly packaged in approved containers, labeled clearly, and transported by carriers compliant with hazardous material shipping rules to ensure safety.
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Benzene,(Chloromethyl)Ethyl Benzene,(Chloromethyl)Ethyl
General Information
Where to Buy Benzene,(Chloromethyl)Ethyl in China?
As a trusted Benzene,(Chloromethyl)Ethyl 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,(Chloromethyl)Ethyl supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

Benzene, (chloromethyl) ethyl what are the chemical properties
(Chloromethyl) ethylbenzene has unique chemical properties. In this compound, the benzene ring is aromatic, stable and can undergo electrophilic substitution reaction. In case of electrophilic reagents, the hydrogen on the benzene ring can be replaced, and reactions such as halogenation, nitrification, and sulfonation can occur.
The (chloromethyl) and ethyl groups of the side chain also have characteristics. In chloromethyl chloride, the chlorine atom has strong electronegativity, which causes large C-Cl bond polarity and high activity. This chloromethyl chloride is prone to nucleophilic substitution reactions. If there are nucleophilic reagents such as hydroxide ions, alcohol anions, etc., chlorine is easily replaced to form alcohols, ethers and other compounds. At the same time, due to the electron-withdrawing effect of chlorine atoms, the electron cloud density of the benzene ring can be reduced, which affects the activity and positional selectivity of the electrophilic substitution reaction on the benzene ring.
Ethyl is the power supply group, which will increase the electron cloud density of the benzene ring, making the electrophilic substitution reaction of the benzene ring easier to carry out, and it is mainly an ortho-and para-position locator, guiding the electrophilic reagents to attack the ortho-and para-position of the benzene ring.
(chloromethyl) ethylbenzene is widely used in the field of organic synthesis, and can be used as an intermediate to construct complex organic molecular structures through various reactions to meet the needs of medicine, materials and other fields.
Benzene, (chloromethyl) ethyl what are the uses
(Chloromethyl) ethylbenzene has a wide range of uses. In the field of organic synthesis, it is often a key raw material. It can be used to produce a variety of organic compounds through its special structure and various reactions. If it interacts with nucleophiles, it can introduce different functional groups, expand the structure of molecules, and pave the way for the creation of novel organic materials.
It is also important in the pharmaceutical and chemical industry. It can also be used as a starting material for the synthesis of specific drug molecules. With its chemical activity, it participates in the construction of key structures of drugs, which is very helpful for the research and development of new drugs. It has also emerged in the field of materials science. After appropriate modification and polymerization, or can prepare polymer materials with special properties, such as excellent thermal stability, mechanical properties, etc., it is very useful in high-end fields such as aerospace and electronic devices.
Furthermore, in the fine chemical industry, (chloromethyl) ethylbenzene can be used to synthesize various fine chemicals, such as fragrances and additives. Through clever chemical transformation, the product is endowed with unique properties and functions to meet the market demand for high-quality fine chemicals. In short, (chloromethyl) ethylbenzene plays an important role in many chemical-related fields, promoting the development and progress of various industries.
Benzene, (chloromethyl) ethyl is synthesized
To prepare (chloromethyl) ethylbenzene, the following method can be followed.
Take the benzene as the group first, and make it alkylated with halogenated ethane under the catalysis of Lewis acid such as aluminum trichloride. In this reaction, the alkyl group of halogenated ethane will replace the hydrogen on the benzene ring to obtain ethylbenzene. The reaction conditions need to be at an appropriate temperature and in an anhydrous environment, because Lewis acid is easily deactivated in contact with water.
After ethylbenzene is obtained, it is then reacted with chloromethylation reagents. Polyformaldehyde, hydrogen chloride and zinc-zinc chloride complexes (Lefolmatsky reagent) are often used as chloromethylation systems. In this system, the hydrogen on the benzene ring will be replaced by chloromethyl at a suitable temperature and reaction time to obtain (chloromethyl) ethylbenzene.
The reaction process needs to pay attention to the control of the reaction conditions in each step, such as temperature, catalyst dosage, reactant ratio, etc., in order to improve the yield and purity of the product. And after each step of the reaction, it is appropriate to use suitable separation and purification methods, such as distillation, extraction, recrystallization, etc., to remove impurities and obtain pure (chloromethyl) ethylbenzene.
Benzene, (chloromethyl) ethyl in storage and transportation
"Benzene, (chloromethyl) ethyl This substance requires attention to many matters during storage and transportation.
It has certain special properties. Benzene is a toxic and volatile organic compound, and (chloromethyl) ethyl may also have specific chemical activities. When storing, the first priority is the environment. A cool, dry and well-ventilated place must be selected to avoid high temperature and humidity. High temperature can easily cause its volatilization to intensify, and humidity or chemical reactions can damage its quality.
Furthermore, the choice of container is also critical. A container with excellent airtightness must be used to prevent leakage. The volatilization of benzene will increase the concentration in the air, endangering the environment and people. For (chloromethyl) ethyl, a suitable container can maintain its chemical stability.
During transportation, strictly abide by the regulations. Transportation vehicles should be equipped with corresponding protective and emergency equipment. Drivers and escorts must be familiar with the characteristics of this material and emergency response methods. In case of leakage, take quick measures to evacuate the crowd and block the source of fire to prevent explosions and poisoning accidents.
And when handling, also need to be cautious. Handle with care, avoid violent vibration and collision, and avoid leakage caused by container damage. In short, in the process of storing and transporting benzene and (chloromethyl) ethyl, every link is related to safety and quality, and should not be ignored. "
What are the effects of Benzene, (chloromethyl) ethyl on the environment and human health?
"Effects of Benzene and (Chloromethyl) Ethyl on the Environment and Human Health"
Benzene is a common organic compound with a special odor and is liquid at room temperature. It is widely used in industrial production, such as chemical, pharmaceutical, coatings and other fields. However, benzene has a significant impact on the environment and human health.
In terms of the environment, benzene is volatile and can escape into the atmosphere. After photochemical reactions, ozone and other pollutants are generated, which affects air quality. If benzene leaks into soil and water bodies, it will remain in the environment for a long time because it is difficult to degrade, polluting soil and water sources, affecting the balance of ecosystems, and endangering the survival of animals and plants.
As for human health, benzene is a carcinogen. Inhalation through the respiratory tract, skin contact or accidental ingestion can cause human poisoning. Long-term exposure to benzene-containing environments can easily cause blood system diseases, such as leukemia, aplastic anemia, etc. Benzene can also affect the nervous system, causing headaches, dizziness, fatigue, insomnia and other symptoms. In severe cases, even coma and convulsions are life-threatening.
(chloromethyl) ethyl, also has adverse effects on the environment and human health. Its chemical properties are active, and after entering the environment, it may interfere with the chemical balance of the ecosystem. For the human body, it may be irritating, and contact with the skin and mucous membranes can cause redness, swelling, pain and other discomfort. If inhaled into the body, or affect the respiratory system, cause symptoms such as cough and asthma. Long-term exposure may also cause damage to the liver, kidneys and other organs, affecting the normal physiological functions of the human body.
In summary, benzene and (chloromethyl) B pose potential hazards to the environment and human health. During production and use, effective protection and treatment measures must be taken to reduce their negative effects.