1,3,5-Trichloro-2-Nitrobenzene
Linshang Chemical
HS Code |
631315 |
Chemical Formula | C6H2Cl3NO2 |
Molar Mass | 238.44 g/mol |
Appearance | Yellow solid |
Melting Point | 72 - 74 °C |
Boiling Point | 268 - 270 °C |
Density | 1.67 g/cm³ |
Solubility In Water | Insoluble |
Solubility In Organic Solvents | Soluble in benzene, toluene, etc. |
Odor | Pungent |
Stability | Stable under normal conditions |
Hazard Class | Toxic |
As an accredited 1,3,5-Trichloro-2-Nitrobenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 1,3,5 - Trichloro - 2 - nitrobenzene packaged in 500g containers. |
Storage | 1,3,5 - Trichloro - 2 - nitrobenzene should be stored in a cool, dry, well - ventilated area. Keep it away from heat, sparks, and open flames as it may be flammable. Store in a tightly closed container to prevent leakage. Separate it from oxidizing agents and reducing substances to avoid potential chemical reactions. |
Shipping | 1,3,5 - trichloro - 2 - nitrobenzene is a hazardous chemical. Shipping requires proper packaging in accordance with regulations, often in specialized containers. It must be labeled clearly and transported by carriers licensed for hazardous materials. |
Competitive 1,3,5-Trichloro-2-Nitrobenzene prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615365006308 or mail to info@alchemist-chem.com.
We will respond to you as soon as possible.
Tel: +8615365006308
Email: info@alchemist-chem.com


As a leading 1,3,5-Trichloro-2-Nitrobenzene supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
In the field of pesticides, it is also an important raw material. It can be used to create high-efficiency insecticides. With its chemical properties, it shows strong poisoning ability against specific pests, and has a relatively small impact on the environment, which is in line with the current green environmental protection concept. It can also be used to synthesize herbicides, which have excellent killing effects on specific weeds. It can help agricultural production weeding operations and improve crop yield and quality.
In the field of materials science, 1% 2C3% 2C5-trifluoro-2-chlorobenzoyl can be used as a functional additive. Adding polymer materials can improve material properties, such as enhancing the material's resistance to chemical corrosion, making the material more stable in complex chemical environments; it can also improve the material's thermal stability, broaden the material's operating temperature range, and allow the material to maintain good performance in high-temperature environments. It has important application value in fields such as aerospace and electronics that require strict material properties.
This substance is an organic compound with specific physical properties. Its appearance may be a colorless to light yellow liquid, and it has a special odor, which is derived from the functional groups of its molecular structure.
In terms of its density, it may exhibit a specific value compared to water, which often varies depending on the precise measurement conditions. Generally speaking, it will vary according to the measurement standards and environmental parameters recorded in the relevant chemical manual.
Its boiling point is also one of the important physical properties. Under normal pressure, the 1%2C3%2C5-%E4%B8%89%E6%B0%AF-2-%E7%A1%9D%E5%9F%BA%E8%8B%AF%E7%9A%84 boiling point is in a certain temperature range, which reflects the strength of the intermolecular force. The stronger the intermolecular force, the more energy is required to transform the substance from liquid to gas, the higher the boiling point.
Furthermore, its solubility cannot be ignored. In organic solvents, such as ethanol, ether, etc., it may exhibit good solubility due to the principle of "similar miscibility". The molecular structure of the substance is similar to that of organic solvents, so it can be mixed with each other. However, the solubility in water may be poor. Because water is a polar solvent, the force between the molecules of the substance and the substance is weak, making it difficult to form a uniform and stable mixture.
In addition, the melting point is also a key indicator to consider its physical properties. Under specific pressure conditions, the temperature at which the substance changes from solid to liquid is the melting point. This value is of great significance for many chemical operations such as purification and identification of the substance, and can provide an important basis for determining the purity of the substance and distinguishing it from other substances.
In summary, the physical properties of 1%2C3%2C5-%E4%B8%89%E6%B0%AF-2-%E7%A1%9D%E5%9F%BA%E8%8B%AF, such as appearance, density, boiling point, solubility, melting point, etc., are of great value in many fields such as chemical research and industrial production, laying the foundation for in-depth understanding and application of this substance.
This substance is flammable, flammable in case of open flame and hot topic. Its chemical activity is more active, and under certain conditions, it can participate in many chemical reactions. For example, it can react with some nucleophiles, because its chlorine atom is more active, it is easily replaced by other groups. Under suitable conditions, it can react with alcohols under alkali catalysis to generate corresponding ether compounds.
And because it contains specific functional groups, it will show unique properties in some oxidation reactions. Under the action of strong oxidants, it may cause its molecular structure to change, and the functional groups are oxidized, thereby transforming into other types of compounds. At the same time, in some reduction reactions, specific groups can be reduced, such as carbonyl groups can be converted into alcohol hydroxyl groups under the action of suitable reducing agents.
From the perspective of physical properties and chemical properties, the physical characteristics such as the solubility of the substance will affect its dispersion and reaction rate in the reaction system. If the solubility is good in a specific solvent, the reaction can be carried out more fully and efficiently. And its stability is not absolute. Under the influence of different environmental factors such as temperature and pH, the chemical properties will change. At high temperature, it may accelerate its reaction with other substances, or cause self-decomposition; different pH environments may also catalyze or inhibit the occurrence of specific reactions.
First take a suitable benzene derivative, such as a benzylbenzene compound. This compound needs to be halogenated before chlorine atoms can be introduced. During halogenation, chlorine gas or chlorine-containing halogenating reagents are often used. Under appropriate reaction conditions, such as specific temperature, pressure and the presence of catalysts, the upper position of benzylbenzene is replaced, so that the chlorine atom is successfully connected to obtain a chlorine-containing benzylbenzene intermediate.
Next, to introduce a trifluoro group, a nucleophilic substitution reaction can be used. Select a suitable fluorine-containing reagent, such as a reagent containing trifluoromethyl, in an appropriate reaction system to react with the previously obtained chlorine-containing intermediate. This reaction also requires precise regulation of temperature, reaction time, solvent and other factors, so that the trifluoro group can smoothly replace the atom or group at the target position, and finally obtain 1% 2C3% 2C5-trifluoro-2-chlorobenzylbenzene.
During the reaction process, temperature control is extremely critical. Too low temperature may cause the reaction rate to be slow and time-consuming; too high temperature may cause side reactions and lead to impure products. And the choice of solvent is also very important. It is necessary to choose a solvent that can well dissolve the reactants and has no adverse interference to the reaction, so as to facilitate the smooth progress of the reaction. At the same time, the rational selection of catalyst and the control of dosage can also significantly affect the efficiency and selectivity of the reaction. In this way, after multiple steps of fine operation and condition regulation, the required 1% 2C3% 2C5-trifluoro-2-chlorobenzylbenzene can be obtained.
In terms of the environment, it has a certain stability, is difficult to degrade rapidly in the natural environment, and is easy to persist in soil, water and atmosphere. Once it enters the soil, or changes the physical and chemical properties of the soil, it affects the structure and function of the soil microbial community, which in turn hinders plant growth. If it flows into the water body, it will harm aquatic organisms, interfere with the balance of aquatic ecosystems, and reduce the self-purification ability of the water body. Its volatilization into the atmosphere will participate in photochemical reactions, have adverse effects on air quality, or form phenomena such as chemical smog that harm the environment.
In terms of personal effects, it has certain toxicity. Inhalation through the respiratory tract can irritate the mucosa of the respiratory tract, causing symptoms such as cough, asthma, breathing difficulties, and long-term exposure or respiratory diseases. If exposed to the skin, it may cause skin allergies, redness, swelling, itching and even burns. Careless ingestion can damage the digestive system, resulting in nausea, vomiting, abdominal pain and other conditions, which may be life-threatening in severe cases. And studies have shown that such fluorinated organic compounds may be potentially carcinogenic, teratogenic and mutagenic. Long-term exposure to them will increase the risk of cancer, cause damage to the reproductive system, and affect the normal development of the fetus.
Therefore, 1% 2C3% 2C5-trifluoro-2-chloromethylbenzene must be properly controlled and handled to avoid serious harm to the environment and human body.

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