2,3-Dimethylchlorobenzene

Linshang Chemical

Specifications

HS Code

160372

Chemical Formula C8H9Cl
Molar Mass 142.61 g/mol
Appearance Colorless to pale - yellow liquid
Odor Aromatic odor
Boiling Point 195 - 197 °C
Melting Point -18.7 °C
Density 1.086 g/cm³ at 20 °C
Solubility In Water Insoluble
Solubility In Organic Solvents Soluble in ethanol, ether, benzene etc.
Flash Point 73 °C
Vapor Pressure 0.13 kPa at 38.4 °C

As an accredited 2,3-Dimethylchlorobenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500 - gram bottles with tight - sealed caps for 2,3 - dimethylchlorobenzene packaging.
Storage 2,3 - dimethylchlorobenzene should be stored in a cool, well - ventilated area away from heat, sparks, and open flames. It should be kept in a tightly - sealed container, preferably made of materials resistant to its corrosive nature. Store it separately from oxidizing agents and incompatible substances to prevent potential reactions. Label the storage container clearly for easy identification.
Shipping 2,3 - dimethylchlorobenzene is a chemical. Shipping should be in accordance with hazardous material regulations. It must be properly packaged in suitable containers to prevent leakage during transportation to ensure safety.
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2,3-Dimethylchlorobenzene 2,3-Dimethylchlorobenzene
General Information
Where to Buy 2,3-Dimethylchlorobenzene in China?
As a trusted 2,3-Dimethylchlorobenzene 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 2,3-Dimethylchlorobenzene 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 2,3-dimethylchlorobenzene?
2% 2C3-dimethylpentane, its main uses are as follows: This substance is often used as an organic solvent in the industrial field. Because of its relatively stable chemical properties and specific solubility, it can dissolve a variety of organic compounds. In the production process of paints, inks, adhesives, etc., it can be used as a solvent to promote uniform mixing of various ingredients, so that the product has good construction performance and use effect. For example, in some high-end coating formulations, it can help resins, pigments, etc. to disperse uniformly to form a smooth and excellent coating. In organic synthesis, 2% 2C3-dimethylpentane is an important basic raw material. Organic chemists can introduce different functional groups by performing a series of chemical reactions on it, such as halogenation reaction, oxidation reaction, alkylation reaction, etc., so as to prepare a variety of organic compounds with specific structures and functions. These compounds are widely used in the synthesis of fine chemical products such as medicine, pesticides, and fragrances. In addition, in the field of fuel, it also has certain value. Its combustion performance is relatively stable, and it can be used as one of the components of fuel additives. Adding an appropriate amount can improve the combustion efficiency and anti-explosion performance of fuel, help to improve the working efficiency of the engine, reduce the emission of harmful substances in the exhaust gas, and have a positive effect on improving the quality of fuel.
What are the physical properties of 2,3-dimethylchlorobenzene?
2% 2C3-dimethylpentane is a kind of organic compound. Its physical properties are quite critical, so let me tell you one by one. Looking at its appearance, under room temperature and pressure, 2% 2C3-dimethylpentane is a colorless and transparent liquid, just like the clear water, pure and free of variegation. This liquid has a special smell, but it is not pungent and unpleasant, but has a unique smell of hydrocarbons, which seems to have a bit of oil and gas smell. Talking about density, the density of 2% 2C3-dimethylpentane is less than that of water. If it is placed in one place with water, it can be seen that it floats lightly on the water surface, like a boat on water, and never fuses with water. This property is actually due to its molecular structure and composition, which makes its mass per unit volume smaller than that of water. Furthermore, its boiling point is between 89 and 92 degrees Celsius. When the external temperature rises to this range, 2% 2C3-dimethylpentane will transform from liquid to gaseous, and rise from liquid to gaseous. The melting point is relatively low, around -134 degrees Celsius, indicating that it remains a liquid state stably at room temperature. 2% 2C3-dimethylpentane is extremely insoluble in water, because it is a non-polar molecule, and water is a polar molecule. According to the principle of "similar miscibility", the two are naturally difficult to dissolve with each other. However, it can be well miscible with many organic solvents such as ether and benzene, just like old friends meeting and being close. Its volatility is strong, and it is highly volatile in the air, just like a puff of smoke, which slowly dissipates. This property makes it necessary to pay special attention when using and storing to prevent its volatilization and dissipation. At the same time, 2% 2C3 - dimethylpentane also has flammability, in case of open flame, hot topic is very easy to burn, when burning will produce a bright flame, and release a lot of heat, so in the treatment of this material, fire prevention measures are essential.
What are the chemical properties of 2,3-dimethylchlorobenzene?
2% 2C3-dimethylpentane is an organic compound and belongs to the alkane class. Its chemical properties are described in detail as follows: 1. ** Stability **: This compound is quite stable at room temperature and pressure. Due to the relatively high energy of carbon-carbon single bonds and carbon-hydrogen bonds in its molecular structure, sufficient energy needs to be provided by the outside world to make it chemically react. Just like that strong fortress, it is difficult to shake its stable state without a strong external force. For example, under normal environmental conditions, it can be stored for a long time without significant change. 2. ** Combustion reaction **: Flammable, it can burn violently in sufficient oxygen, generate carbon dioxide and water, and release a large amount of heat energy. The essence of this reaction is the oxidation reaction of carbon, hydrogen and oxygen. It is shown by the chemical reaction equation:\ (C_ {7} H_ {16} + 11O_ {2}\ stackrel {ignite }{=\!=\!=} {2} + 8H_ {2} O\). This process is like a passionate carnival, alkanes and oxygen dance together, releasing huge energy, just like a raging fire illuminates the night, providing indispensable energy for many fields. 3. ** Substitution Reaction **: Although the chemical properties are relatively stable, under certain conditions, such as light or the presence of suitable catalysts, the hydrogen atoms in its molecules can be replaced by other atoms or atomic groups. For example, when reacting with chlorine under light conditions, chlorine atoms will gradually replace hydrogen atoms to generate a variety of chlorinated products such as monochlorides and dichlorides. This process is like a subtle substitution game, where different atoms exchange positions on the molecular stage to create a variety of chemical products. 4. ** Reaction with strong acids, strong bases and strong oxidants **: Under normal circumstances, 2% 2C3-dimethylpentane is inert to strong acids and bases, and it is not easy to react with them. When encountering strong oxidants, it can be oxidized under specific conditions. However, due to the structural characteristics of alkanes, it is more difficult to oxidize than other organic compounds containing functional groups. This is like a calm person who is unmoved in the face of ordinary disturbances. Only when he encounters a powerful and specific force will he exhibit different chemical behaviors.
What are the synthesis methods of 2,3-dimethylchlorobenzene?
The synthesis method of 2% 2C3-dimethylpentane has been around for a long time, and it mostly follows a specific chemical path. Today, the number method is described in detail to make sense. First, the coupling reaction of halogenated hydrocarbons can be the way to synthesis. Select an appropriate halogenated hydrocarbon, such as 2-halogenated-3-methylpentane, and under specific reaction conditions, catalyze with a metal reagent to break the carbon-halogen bond of the halogenated hydrocarbon, and then couple with each other to form a carbon-carbon bond, and finally obtain 2% 2C3-dimethylpentane. This reaction requires precise control of the reaction temperature, the amount of catalyst and the reaction time to ensure the high efficiency of the reaction and the purity of the product. Second, the addition reaction of olefins is also a commonly used method. Select a suitable olefin, such as 2-methyl-2-pentene, and make it add to hydrogen halide or other electrophilic reagents. In the reaction, the double bond of the olefin is opened, and the electrophilic reagent is added to it to form a halogenated hydrocarbon intermediate. Subsequently, through the reduction step, the halogen atom is removed, and the methyl group is introduced to achieve the synthesis of 2% 2C3-dimethylpentane. In this process, the selection of olefins, the nature of the addition reagent, and the setting of reduction conditions all have a significant impact on the success or failure of the synthesis and the quality of the product. Furthermore, the alkylation reaction can also help the synthesis. With appropriate alkanes as substrates, alkylation reactions occur with alkylating reagents such as haloalkanes or alcohols, under the action of strong acids or specific catalysts. Through rational design of the structure of the substrate and reagent, precise regulation of the reaction conditions, the alkyl group is introduced into the target position, so as to synthesize 2% 2C3-dimethylpentane. However, this reaction needs to pay attention to the occurrence of side reactions, such as isomerization, polyalkylation, etc., and the reaction conditions must be carefully controlled to improve the selectivity of the product. The above synthesis methods have their own advantages and disadvantages. Only by weighing the options according to actual needs, the availability of raw materials and the reaction conditions can 2% 2C3-dimethylpentane be synthesized efficiently.
What should be paid attention to when storing and transporting 2,3-dimethylchlorobenzene?
2% 2C3-dimethylpentane is an organic compound. When storing and transporting, the following aspects should be paid attention to: First, fire and explosion-proof. This compound is a flammable substance, and it is easy to burn and explode in case of open flames and hot topics. Therefore, the storage place must be kept away from fire and heat sources, and explosion-proof lighting and ventilation facilities should be used. It is strictly forbidden to use mechanical equipment and tools that are prone to sparks. Second, control the temperature and humidity. It should be stored in a cool and ventilated warehouse to prevent direct sunlight. Excessive temperature can easily cause its volatilization to accelerate, and even cause the pressure in the container to increase, which poses a safety hazard. Excessive humidity may affect its quality, because the substance may react with water or absorb moisture. Third, sealed storage. It is necessary to ensure that the container is well sealed to prevent it from volatilizing into the air. On the one hand, it can prevent pollution to the environment, and on the other hand, it can prevent it from forming an explosive mixture with the air. Fourth, isolated storage. Do not mix with oxidants, strong acids, strong alkalis and other substances, because it may have violent chemical reactions with these substances, resulting in danger. Fifth, transportation protection. During transportation, it should be ensured that the container does not leak, collapse, fall, or damage. Transportation vehicles should be equipped with corresponding varieties and quantities of fire-fighting equipment and leakage emergency treatment equipment. It is best to transport in the morning and evening in summer to prevent sun exposure. Sixth, clear signs. Storage containers and transportation vehicles should be clearly labeled with the name of the substance, hazardous characteristics and other information, so that in an emergency, relevant personnel can quickly know and take correct measures. In this way, the safety of 2% 2C3-dimethylpentane during storage and transportation can be ensured to avoid accidents.