1,3,5-Trifluorotrichlorobenzene
Linshang Chemical
HS Code |
871725 |
Chemical Formula | C6Cl3F3 |
Molar Mass | 248.42 g/mol |
Appearance | Colorless to pale - yellow liquid |
Density | 1.678 g/cm³ at 25 °C |
Boiling Point | 162 - 163 °C |
Melting Point | -21 °C |
Vapor Pressure | 1.33 kPa at 35.4 °C |
Solubility In Water | Insoluble |
Solubility In Organic Solvents | Soluble in many organic solvents like benzene, toluene |
Flash Point | 67 °C |
Refractive Index | 1.469 at 20 °C |
As an accredited 1,3,5-Trifluorotrichlorobenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 500 - gram bottle packaging for 1,3,5 - trifluorotrichlorobenzene chemical. |
Storage | 1,3,5 - trifluorotrichlorobenzene should be stored in a cool, well - ventilated area away from heat sources and open flames. It should be stored in tightly sealed containers made of materials resistant to its corrosive nature, like stainless steel or certain plastics. Keep it separate from oxidizing agents and incompatible substances to prevent dangerous reactions. Ensure proper labeling for easy identification and safety. |
Shipping | 1,3,5 - trifluorotrichlorobenzene is shipped in specialized, corrosion - resistant containers. These are carefully sealed to prevent leakage. Shipments follow strict chemical transport regulations, ensuring safe transit by road, rail, or sea. |
Competitive 1,3,5-Trifluorotrichlorobenzene 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-Trifluorotrichlorobenzene supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
This substance is widely used in various chemical fields. In the field of materials science, it can be used as a key monomer for high-performance polymers. With its unique chemical structure, after polymerization, the resulting polymer has excellent mechanical properties, thermal stability and chemical stability. For example, in the aerospace field, the prepared high-performance materials can be used to manufacture structural components of aircraft, which can withstand extreme temperature and pressure environments to ensure flight safety and stability.
In the field of medical chemistry, 1,3,5-triazine triamide benzene is also of great value. Due to its special molecular structure, it can be used as an intermediate for drug synthesis to help develop new types of drugs. Researchers can modify and modify its structure to give drugs specific biological activities, so as to carry out effective treatment for various diseases, such as the development of anti-cancer drugs and antibacterial drugs.
In the agricultural field, it can participate in the preparation of new pesticides and fertilizers. As a pesticide ingredient, it can use its chemical properties to repel and poison pests, and compared with traditional pesticides, it may have higher selectivity and lower environmental toxicity; as a fertilizer additive, it can improve soil structure, improve soil fertility, promote crop growth and development, and then improve crop yield and quality.
In addition, in the preparation of fine chemical products such as coatings and inks, 1,3,5-triazine triamide benzene can also play an important role. It can improve the adhesion, wear resistance and weather resistance of coatings, so that coatings can maintain good performance and appearance for a long time; in inks, it can improve ink drying speed, printability and color stability, and improve printing quality.
Looking at its form, under normal conditions, 1% 2C3% 2C5-triazine trithiol is mostly in a solid state, with a fine texture, just like the micro-crystals of nature. Under sunlight, it can occasionally refract fine brilliance, shining like a star.
When it comes to color, it often shows a white color, pure and flawless, just like the first fall of winter snow, unstained dust, giving people a sense of simplicity and purity.
Smell its smell, it has a weak special smell, not pungent or unpleasant, nor is it a fragrant fragrance, just like the faint smell emitted by ancient trees in the mountains, which needs to be carefully sensed to be detectable.
Its solubility is quite characteristic. In water, the degree of dissolution is quite limited, just like a lone in water, it is difficult to blend with water. However, when placed in some organic solvents, such as ethanol, acetone, etc., it can gradually dissolve and merge with the solvent, showing a different state.
As for the melting point, after many studies, its value is within a certain range. This melting point characteristic allows it to quietly transform from solid to liquid under specific temperature conditions, just like ice and snow in spring, gradually melting into flow.
The physical properties of 1% 2C3% 2C5 -triazine trithiol are its unique logo, laying the foundation for exploration and application in many fields, just like masonry is indispensable in Guangsha.
In terms of its reactivity, due to the presence of carbon-carbon double bonds, many addition reactions can occur. For example, with halogen elemental substances, electrophilic addition can be carried out smoothly, the double bond is opened, and the halogen atom is added to it. It can also react with hydrogen halide, following the Markov rule, hydrogen atoms are added to the double bond carbon atoms containing more hydrogen.
Furthermore, because of its fluorine atoms, under certain conditions, it can participate in nucleophilic substitution reactions. Fluorine atoms can be replaced by other nucleophilic reagents. However, due to the stability of carbon-fluorine bonds, such reactions often require specific conditions, such as high temperature, strong bases or specific catalysts.
Its stability also affects its application. In the field of organic synthesis, it can be used as an important intermediate to build complex organic molecules with its reactivity. Because of its stability to heat and chemical reagents, it can be used in materials science or can be used to prepare polymer materials with special properties, giving materials such as weather resistance and chemical corrosion resistance. In conclusion, 1% 2C3% 2C5-triene trifluorotoluene has unique chemical properties and potential applications in many fields.
First of all, the ancient distillation technique should be used to purify the raw material, remove its impurities, and extract its essence. In a special kettle, boil it slowly with a slow fire, observe the rise of its gas, wait for the gas to condense into a liquid, and then flow back into the kettle, and repeat it several times to achieve purity.
Then, a specific catalyst is introduced. This catalyst is made from various rare minerals by grinding, calcining, and fusing. Put it slowly into the purified raw materials, and the temperature and duration need to be strictly controlled during this period. With the temperature of the charcoal fire, the contents of the kettle need to be reacted slowly. Special personnel need to wait, observe its changes, and adjust the temperature in a timely manner to ensure a smooth and orderly reaction.
Furthermore, during the reaction, the pressure needs to be precisely controlled. Use special equipment to adjust the pressure in the kettle, so that the reaction is in the direction of generating 1% 2C3% 2C5-triene trichlorobenzene. During this process, a slight difference in pressure may cause the product to be impure or form other substances.
When the reaction is over, take out the contents of the kettle and filter it to remove its residue. Then by fractionation, 1% 2C3% 2C5-triene trichlorobenzene is separated according to its boiling point difference. During fractionation, careful operation is required to observe its temperature changes, so that each component is separated one by one, and finally pure 1% 2C3% 2C5-triene trichlorobenzene.
The whole process is interlocking, requiring the care and attention of craftsmen. If there is a little carelessness, it will fall short. Only by following this rigorous method can high-quality 1% 2C3% 2C5-triene trichlorobenzene be obtained.
First, this medicine has certain toxicity, so it must be used with caution, strictly according to the dose specified in the prescription, and must not be increased or decreased without authorization. When a doctor prescribes medication, he must carefully observe the patient's illness, constitution, and weigh the pros and cons to prevent improper medication from causing other changes. If used in excess, there is a risk of poisoning, and if it is light, dizziness, nausea, vomiting, or life-threatening.
For the second time, the method of storage should not be ignored. It should be placed in a cool, dry place, away from direct sunlight and moisture, so as not to change the properties of the drug and affect the efficacy of the drug. If stored improperly, the drug will be damp and deteriorated, which will not only fail to cure the disease, but also increase the suffering of the patient.
Furthermore, during the medication period, it is necessary to pay close attention to the patient's reaction. If after the medication, there are allergic signs such as rash, itching, shortness of breath, or other abnormal discomfort, the medication should be stopped immediately and seek medical treatment immediately. And the course of medication should also follow the doctor's advice, and should not be interrupted or prolonged at will, so as not to repeat the disease or cause the harm of drug resistance.
In addition, this medicine may interact with other medicines. If the patient is taking other medicines, be sure to inform the doctor, after careful consideration, to avoid adverse reactions between drugs to ensure the safety and effectiveness of the medication. In short, use 1%2C3%2C5-%E4%B8%89%E6%B0%9F%E4%B8%89%E6%B0%AF%E8%8B%AF%E5%9C%A8%E4%BD%BF%E7%94%A8%E8%BF%87%E7%A8%8B%E4%B8%AD%EF%BC%8C%E6%80%BB%E6%94%BE%E4%B8%8D%E5%BE%97%E4%BA%8B%E9%A1%B9%EF%BC%8C%E5%8D%B3%E6%98%AF%E8%BF%9B%E8%A1%8C%E4%BA%86%E4%B8%80%E4%BA%9B%E6%B3%A8%E6%84%8F%E4%BA%8B%E9%A1%B9%E3%80%82

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