The product is High Quality 4′-CHLORO-2′-HYDROXYACETOPHENONE with the CAS number 6921-66-0. It comes at a low price, which makes it cost - effective for various applications. This compound is characterized by its specific molecular structure. The presence of the chloro and hydroxy groups attached to the acetophenone backbone gives it unique chemical properties.
Physically, it has certain solubility characteristics. It is soluble in some organic solvents, which is important for its use in chemical reactions. The purity of the product is maintained at a high level to ensure consistent performance in different applications. The melting point and boiling point of 4′-CHLORO-2′-HYDROXYACETOPHENONE are well - defined and can be used as reference points during its handling and processing.
4′-CHLORO-2′-HYDROXYACETOPHENONE has a wide range of uses in the chemical industry. Firstly, it serves as an important intermediate in the synthesis of various pharmaceuticals. Its unique chemical structure allows it to participate in specific chemical reactions that are crucial for the production of drugs with desired therapeutic effects. For example, it can be used in the synthesis of anti - inflammatory drugs and analgesics.
Secondly, it is used in the production of dyes and pigments. The compound can react with other chemicals to form colored substances with good stability and color - fastness. This makes it suitable for use in the textile, printing, and painting industries.
In addition, it can be used in the research and development of new materials. Its chemical reactivity can be exploited to create polymers and other advanced materials with special properties such as high strength, good conductivity, or optical activity.
When using 4′-CHLORO-2′-HYDROXYACETOPHENONE, it is essential to follow proper safety procedures. Wear appropriate personal protective equipment, including gloves, goggles, and a lab coat. The product should be stored in a cool, dry place away from sources of heat and ignition.
In a chemical reaction setting, it is important to accurately measure the amount of the product according to the reaction requirements. Dissolve it in a suitable organic solvent if necessary, and then add it slowly to the reaction mixture while stirring continuously. The reaction conditions such as temperature, pressure, and reaction time should be carefully controlled to ensure the desired reaction outcome.
After the reaction is completed, appropriate separation and purification methods should be used to obtain the final product. This may involve techniques such as filtration, distillation, or chromatography.
Case 1: Pharmaceutical Synthesis
In a pharmaceutical company, 4′-CHLORO-2′-HYDROXYACETOPHENONE was used as an intermediate in the synthesis of a new anti - inflammatory drug. The company followed a multi - step synthesis process. First, it was reacted with a specific amine compound under controlled temperature and pH conditions. The reaction was carried out in an organic solvent, and a catalyst was added to speed up the reaction. After several purification steps, the final drug compound was obtained with high purity. Clinical trials showed that the new drug had significant anti - inflammatory effects with fewer side - effects compared to existing drugs.
Case 2: Dye Production
A textile dye manufacturer used 4′-CHLORO-2′-HYDROXYACETOPHENONE to produce a new type of blue dye. The compound was reacted with a series of aromatic compounds in the presence of a reducing agent. The reaction was carried out in a large - scale reactor under high - temperature and high - pressure conditions. The resulting dye was tested on various fabrics, and it showed excellent color - fastness and bright color. The new dye was well - received in the market due to its high quality and cost - effectiveness.
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