High Quality 2,3-dihydroxynaphthalene with the CAS number 92 - 44 - 4 is a chemical compound with significant importance in various industrial and research fields. This product is known for its high purity and is offered at the best price in the market. Its molecular formula is C₁₀H₈O₂, and it has a molar mass of approximately 160.17 g/mol. Physically, it usually appears as a white to off - white crystalline powder. It has certain solubility properties; it is slightly soluble in water but more soluble in organic solvents such as ethanol and acetone. The melting point of 2,3 - dihydroxynaphthalene typically ranges from 120 - 124 °C, which is an important parameter for its handling and processing in different applications.
2,3 - Dihydroxynaphthalene has a wide range of uses across multiple industries. In the field of organic synthesis, it serves as a crucial intermediate for the production of various dyes. Its unique chemical structure allows it to participate in reactions that lead to the formation of color - rich compounds. These dyes are used in textile industries to color fabrics, providing long - lasting and vibrant colors. Additionally, in the pharmaceutical industry, it can be used in the synthesis of certain drugs. Some research suggests that derivatives of 2,3 - dihydroxynaphthalene may have potential biological activities, such as anti - inflammatory and antioxidant properties. In the field of analytical chemistry, it can be used as a reagent for the detection and quantification of certain metal ions. Its ability to form complexes with specific metal ions makes it useful in colorimetric assays.
When using 2,3 - dihydroxynaphthalene, proper safety precautions should be taken. Wear appropriate personal protective equipment, including gloves, safety glasses, and a lab coat. In an organic synthesis setting, it is often added to a reaction mixture in a controlled environment, such as a fume hood. First, dissolve the appropriate amount of 2,3 - dihydroxynaphthalene in the chosen organic solvent, usually with gentle heating and stirring to ensure complete dissolution. Then, add it drop - wise or in small portions to the reaction mixture containing other reagents. Monitor the reaction conditions, such as temperature and pH, as these can significantly affect the outcome of the reaction. When using it as an analytical reagent, prepare a standard solution of known concentration. Use pipettes or burettes to accurately measure the volume of the reagent added to the sample for analysis. Follow the specific protocol for the type of analysis being performed.
Case Study 1: Textile Dyeing
A textile manufacturing company was looking for a new dye intermediate to improve the color fastness and brightness of their fabrics. They decided to use 2,3 - dihydroxynaphthalene in their dye synthesis process. After optimizing the reaction conditions, they were able to produce a new dye that showed excellent color fastness to washing and sunlight. The new dye also had a wider color spectrum, allowing them to produce more vibrant and diverse fabric colors. This led to an increase in customer satisfaction and an expansion of their product line.
Case Study 2: Pharmaceutical Research
A research team in a pharmaceutical company was exploring new compounds with potential anti - inflammatory properties. They used 2,3 - dihydroxynaphthalene as a starting material to synthesize a series of derivatives. Through in - vitro and in - vivo tests, they found that one of the derivatives showed significant anti - inflammatory activity. This discovery opened up new possibilities for the development of novel anti - inflammatory drugs.
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