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What is the main use of 3-Amino-4- (Methylthio) Benzotrifluoride?
3-Amino-4- (methylthio) trifluorotoluene, an organic compound, has a wide range of uses and is of great value in many fields.
In the field of medicinal chemistry, it is often used as a key intermediate. It can be used to synthesize pharmaceutical molecules with specific biological activities. Because the molecular structure contains functional groups such as trifluoromethyl, amino and methylthio, these functional groups endow the compound with unique physical, chemical and biological properties. By modifying and modifying its structure through organic synthesis, derivatives with different pharmacological activities can be obtained to target specific disease targets, such as the development of antibacterial, anti-inflammatory or anti-tumor drugs.
In the field of materials science, this compound may be used to prepare special functional materials. The presence of trifluoromethyl can improve the chemical stability, thermal stability and weather resistance of the material. Introducing it into the polymer material structure can improve the surface properties of the material, such as reducing the surface energy, making the material have water and oil repellent properties, which is suitable for the preparation of self-cleaning materials or special coating materials.
In pesticide chemistry, it is also an important synthetic raw material. After rational structural design and modification, high-efficiency, low-toxicity and environmentally friendly pesticides can be synthesized. Functional groups such as methylthio and amino groups have a significant impact on the interaction between compounds and targets in organisms, or can enhance the selectivity and activity of pesticides against specific pests or pathogens, achieve precise control, and reduce the impact on non-target organisms.
What are the physical properties of 3-Amino-4- (Methylthio) Benzotrifluoride
3-Amino-4- (methylthio) trifluorotoluene is one of the organic compounds. Its physical properties are well-researched.
In terms of its appearance, it is often in the form of a white-like to light yellow crystalline powder, with a relatively pure color and fine texture. This state makes it easy to handle in many operations, easy to weigh, transfer, etc.
As for the melting point, it is within a specific range. The value of this melting point is crucial for identifying the compound and considering its physical state changes under different conditions. Due to its melting point characteristics, the substance will change from solid to liquid at a certain precise temperature point during the heating process. This temperature limit provides an important basis for studying its thermal stability and processing conditions.
Solubility is also an important physical property. In organic solvents such as ethanol and acetone, it exhibits a certain solubility. In ethanol, with moderate stirring, it can partially dissolve to form a uniform dispersion system. This property is convenient for it to participate in various chemical reactions as a reactant or intermediate in organic synthesis reactions, with the help of the mediator of organic solvents. In water, its solubility is relatively small. Due to the hydrophobicity of groups such as trifluoromethyl contained in the molecular structure, the interaction between the substance and water molecules is weak, and it is difficult to dissolve in large quantities in water.
In addition, its density also has specific values. Although the daily visual performance of density is not very significant, the density parameters are of great significance for material balance and container design in chemical production, storage and transportation.
To sum up, the physical properties of 3-amino-4- (methylthio) trifluorotoluene are of great value in organic chemistry research, industrial production and other fields. Researchers and practitioners can rationally plan their applications and treatment methods based on these characteristics.
What is the synthesis method of 3-Amino-4- (Methylthio) Benzotrifluoride?
The synthesis of 3-amino-4- (methylthio) trifluorotoluene is an important topic in the field of organic synthesis. The synthesis of this compound is often done by multiple methods.
First, an aromatic compound containing trifluoromethyl groups is used as the starting material. Sulphur methyl groups can be introduced at specific positions on the starting benzene ring before the starting benzene ring. This step, or a nucleophilic substitution reaction, reacts with the halogenated aromatic compound with an appropriate thiol salt. The halogen atom of the halogenated aromatic compound binds to the sulfur atom in the thiol salt, so that the sulfur methyl group is successfully introduced into the benzene ring.
Subsequently, the amino group introduction reaction is carried out on the compound that has been introduced into the sulfur methyl group. This process can be used by nitration-reduction method. First, the benzene ring is nitrified by an appropriate nitrifying reagent, such as mixed acid (a mixture of nitric acid and sulfuric acid), and the nitro group is introduced at a suitable position. The nitro group is converted into an amino group through a reduction step, such as a reduction system composed of metals (such as iron, zinc, etc.) and acids (such as hydrochloric acid), or catalytic hydrogenation. Then 3-amino-4- (methylthio) trifluorotoluene is obtained.
Second, another approach can also be found. A simple compound containing amino groups and thiomethyl groups is used as the starting material, and the benzene ring is formed by cyclization reaction, and trifluoromethyl is introduced at the same time. For example, through a multi-step reaction, a compound with an appropriate active group undergoes intramolecular cyclization under specific conditions to construct a benzene ring structure. When trifluoromethyl is introduced, or a reagent containing trifluoromethyl is used, and the reaction mechanism such as nucleophilic substitution or electrophilic substitution is used to connect the trifluoromethyl to the benzene ring, and the final product is 3-amino-4- (methylthio) trifluorotoluene. During the synthesis process, attention should be paid to the precise control of various reaction conditions, such as temperature, pH, reactant ratio, etc., to ensure the smooth progress of the reaction and the high yield and purity of the product.
What is the price range of 3-Amino-4- (Methylthio) Benzotrifluoride in the market?
3-Amino-4- (methylthio) trifluorotoluene, this product is in the market, and its price range is difficult to determine. The price varies with many factors, such as the supply and demand of the market, the process of production, the quality of the quality, and the flow of time.
In the past, if the supply exceeds the demand, the price may tend to be flat, or even drop. The market demand is prosperous and the supply is small, the price will often rise. The progress of craftsmanship is also very effective. If the new technique reduces its success, the price may be reduced accordingly. Furthermore, those with high quality are always higher than ordinary products.
Looking at past market conditions, the price may vary from a few yuan per gram to tens of yuan. However, this is only an approximate number, and it is difficult to be precise. In the chemical industry cities, the price fluctuates every time, and the price varies from place to place, depending on the region, transportation costs, and tax differences. To know the exact price, when you carefully observe the current market conditions, consult the merchants and brokers in the industry, you can get a near-real price.
What are the storage conditions for 3-Amino-4- (Methylthio) Benzotrifluoride?
3-Amino-4- (methylthio) trifluorotoluene, this is a chemical substance. Its storage conditions are crucial to its quality and stability.
According to the ancient expression in "Tiangong Kaiwu", such chemicals should be stored in a cool, dry and well-ventilated place. A cool place can be protected from direct sunlight, because the sun is hot, or it may cause chemical changes, which will damage its quality. A dry place can be protected from water vapor, which can easily cause moisture and cause deterioration. Well ventilated, it can disperse harmful gases that may be generated and keep the environment safe.
Furthermore, the storage place should be away from fire and heat sources. Fire, the source of energy, can cause violent chemical reactions and cause danger. The same is true for heat sources. Excessive temperature may cause substances to decompose and evaporate, affecting their properties. At the same time, it needs to be stored separately from oxidants, acids, bases, etc. Because of its active chemical properties, contact with other substances or chemical reactions can cause safety.
In addition, storage containers are also particular. When using a sealed container to prevent substances from evaporating and escaping, it can also prevent external impurities from mixing in. And the material of the container should be compatible with the substance, not react with it, and keep the substance pure. When
is stored, a label should be made, and the name, specification, date and other information of the substance should be recorded in detail for easy management and access, and its status can also be tracked. In this way, 3-amino-4- (methylthio) trifluorotoluene can be stored safely for later use.