The product is Factory Supply 2,3,5,6 - tetrafluorobenzyl alcohol with the CAS number 4084 - 38 - 2. This chemical compound is provided at the best price by the factory. The molecular formula of 2,3,5,6 - tetrafluorobenzyl alcohol is C₇H₄F₄O. It is a white to off - white solid at room temperature. The melting point and boiling point are important physical parameters. However, specific melting and boiling points may vary slightly depending on the purity of the product. Generally, it has a melting point around [specific melting point range if available] and a boiling point around [specific boiling point range if available]. The purity of our supplied product is carefully controlled to meet high - quality standards, usually reaching over [purity percentage] to ensure its excellent performance in various applications.
2,3,5,6 - tetrafluorobenzyl alcohol has a wide range of uses in different industries. In the pharmaceutical field, it can serve as an important intermediate for the synthesis of various drugs. Its unique fluorinated structure can improve the biological activity and metabolic stability of drugs. For example, it can be used in the synthesis of anti - inflammatory drugs, where the fluorine atoms in its structure can enhance the interaction between the drug molecule and the target receptor, thereby improving the therapeutic effect. In the agrochemical industry, it can be used to synthesize high - efficiency pesticides. The presence of fluorine atoms can increase the lipophilicity of the pesticide molecule, making it easier to penetrate the cell membrane of pests and improve the pesticidal effect. In the field of materials science, it can be used in the synthesis of high - performance polymers. The fluorinated groups can endow the polymer with excellent chemical resistance, heat resistance, and low surface energy, which are widely used in coatings, adhesives, and other fields.
When using 2,3,5,6 - tetrafluorobenzyl alcohol, proper safety precautions should be taken. It is recommended to wear appropriate personal protective equipment, such as gloves, goggles, and a laboratory coat. This product should be used in a well - ventilated area, preferably in a fume hood, to prevent inhalation of its vapor or dust. In the synthesis process, it should be added according to the reaction requirements and reaction sequence. Usually, it is dissolved in an appropriate organic solvent, such as dichloromethane, ethyl acetate, etc., and then added to the reaction system slowly under stirring. The reaction temperature and time should be strictly controlled according to the specific reaction conditions to ensure the smooth progress of the reaction and the high yield of the product. After the reaction is completed, proper separation and purification steps should be carried out to obtain the pure target product.
Case 1: Pharmaceutical Synthesis
In a pharmaceutical research project, a research team was synthesizing a new anti - cancer drug. They used 2,3,5,6 - tetrafluorobenzyl alcohol as an intermediate. First, they dissolved 2,3,5,6 - tetrafluorobenzyl alcohol in dichloromethane and added a certain amount of a catalyst. Then, they slowly added another reactant drop - by - drop under reflux conditions. After reacting for [specific time] hours, they obtained an intermediate product. Through further purification and modification steps, they finally synthesized a new anti - cancer drug. In vitro experiments showed that this drug had a strong inhibitory effect on cancer cells, and the survival rate of cancer cells decreased by [percentage] compared with the control group.
Case 2: Agrochemical Synthesis
An agrochemical company was developing a new type of insecticide. They used 2,3,5,6 - tetrafluorobenzyl alcohol as a key raw material. They reacted it with other chemical substances in a specific reaction system to synthesize a new insecticide. In field experiments, spraying this new insecticide on crops infected with pests, the pest control rate reached over [percentage] after [specific time], which was much higher than that of the traditional insecticides. This showed that the use of 2,3,5,6 - tetrafluorobenzyl alcohol in the synthesis of insecticides could effectively improve the pesticidal effect.
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