4′-Aminoacetanilide, with the CAS number 122 - 80 - 5, is a high - quality chemical product. It is also known as N - (4 - aminophenyl)acetamide. The molecular formula of this compound is C8H10N2O, and it has a molecular weight of approximately 150.18 g/mol. Physically, it appears as a white to light - yellow crystalline powder. In terms of solubility, it is slightly soluble in water but more soluble in organic solvents such as ethanol and acetone. The melting point of 4′-Aminoacetanilide typically ranges from 163 - 167 °C.
4′-Aminoacetanilide has a wide range of applications in various industries. In the pharmaceutical industry, it serves as an important intermediate in the synthesis of many drugs. For example, it can be used in the preparation of antipyretics and analgesics. Its unique chemical structure allows it to participate in a series of chemical reactions that lead to the formation of more complex and effective pharmaceutical compounds.
In the dye industry, this compound is used as a starting material for the synthesis of various dyes. The amino group and the acetanilide structure in 4′-Aminoacetanilide can react with different reagents to produce dyes with different colors and properties. These dyes are widely used in textile dyeing, leather coloring, and other fields.
In addition, it can also be used in the research and development of new chemical materials. Scientists can use it as a building block to design and synthesize new polymers or functional materials with special properties.
When using 4′-Aminoacetanilide, it is necessary to follow strict safety procedures. First of all, wear appropriate protective equipment, such as gloves, goggles, and a lab coat, to avoid direct contact with the skin and eyes. In a laboratory or industrial setting, it should be operated in a well - ventilated area to prevent the inhalation of dust or fumes.
In the synthesis process, accurate measurement of the amount of 4′-Aminoacetanilide is required according to the reaction formula. Usually, it is dissolved in an appropriate organic solvent before participating in the reaction. The reaction conditions, such as temperature and reaction time, should be strictly controlled according to the specific reaction requirements. After the reaction is completed, appropriate separation and purification steps should be carried out to obtain the desired product.
Case 1: In a pharmaceutical company, researchers were working on the synthesis of a new antipyretic drug. They used 4′-Aminoacetanilide as an intermediate. First, they dissolved 4′-Aminoacetanilide in ethanol and then added a specific reagent under controlled temperature conditions. Through a series of chemical reactions, they successfully synthesized a new compound with good antipyretic activity. After further purification and testing, the new drug showed excellent performance in animal experiments and was expected to enter clinical trials soon.
Case 2: A dye factory used 4′-Aminoacetanilide to develop a new type of blue dye. They reacted 4′-Aminoacetanilide with a specific aromatic compound in the presence of a catalyst. After a series of optimization of reaction conditions, they obtained a blue dye with high color fastness and good solubility. This dye was quickly put into production and was well - received in the textile market.
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