The product, p - phenetidine (CAS No.: 156 - 43 - 4), is a chemical compound that is supplied directly from the factory at the best price. It has a specific chemical structure and certain physical and chemical properties. Physically, it has a characteristic appearance (color, state) that can be determined through laboratory analysis. In terms of chemical properties, it participates in a variety of chemical reactions due to the functional groups present in its structure. Its molecular formula and molecular weight are key parameters for understanding its chemical nature. The purity of the product is carefully controlled during the manufacturing process to ensure its quality and performance in various applications.
p - phenetidine has diverse applications in different industries. In the pharmaceutical industry, it can be used as an intermediate in the synthesis of certain drugs. Its chemical reactivity allows it to undergo reactions with other compounds to form the active ingredients of pharmaceuticals. In the dye industry, it can serve as a raw material for the production of specific dyes. The unique chemical structure of p - phenetidine can contribute to the color - forming mechanism of dyes, resulting in dyes with good color fastness and other properties. Additionally, it may also find applications in the field of organic synthesis research, where it can be used to develop new chemical compounds and explore new reaction mechanisms.
When using p - phenetidine, strict safety protocols should be followed. First, it should be handled in a well - ventilated laboratory or industrial environment to prevent the accumulation of harmful vapors. Appropriate personal protective equipment, such as gloves, goggles, and a lab coat, should be worn. The product should be stored in a cool, dry place away from sources of heat and ignition. When performing chemical reactions with p - phenetidine, the reaction conditions, such as temperature, pressure, and the ratio of reactants, should be carefully controlled according to the specific reaction requirements. Before using it in large - scale production, small - scale experiments should be carried out to optimize the reaction conditions and ensure the safety and efficiency of the process.
In the pharmaceutical industry, a research team was developing a new anti - inflammatory drug. They used p - phenetidine as an intermediate in the multi - step synthesis process. By carefully controlling the reaction conditions, they were able to convert p - phenetidine into a key intermediate with high yield and purity. This intermediate was then further reacted with other compounds to form the final drug product. After rigorous pre - clinical and clinical trials, the new anti - inflammatory drug showed significant efficacy and low side - effects. In the dye industry, a dye manufacturer used p - phenetidine to produce a new type of blue dye. By adjusting the reaction conditions and the amount of p - phenetidine used, they were able to obtain a dye with excellent color fastness and bright color. This new dye was well - received in the market and was used in the textile industry for dyeing high - quality fabrics.
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