The product named High Quality 4,4′-diaminobenzenesulphanilide with CAS number 16803 - 97 - 7 is offered at the best price. The CAS number is a unique identifier for this chemical compound, which helps in accurate identification and tracking in the chemical industry.
It is a high - quality product, indicating that it meets certain standards of purity, stability, and performance. However, specific parameters such as purity level, melting point, boiling point, and solubility may vary depending on the manufacturing process and quality control measures of the supplier. Generally, for a compound of this type, the purity might be expected to be above 95% for high - quality products.
4,4′-diaminobenzenesulphanilide has several important applications. In the field of materials science, it can be used as a building block for synthesizing high - performance polymers. These polymers may have enhanced mechanical properties, such as high strength and good heat resistance, making them suitable for use in engineering plastics, composite materials, and coatings.
In the pharmaceutical industry, it may serve as an intermediate in the synthesis of certain drugs. Its chemical structure allows it to participate in various chemical reactions to form more complex and biologically active compounds. Additionally, it can also be used in the research and development of new drugs.
In the field of dye and pigment production, it can be used as a raw material for synthesizing dyes with specific colors and properties. The amino and sulphonamide groups in its structure can interact with other chemical substances to form colorful and stable dyes.
When using High Quality 4,4′-diaminobenzenesulphanilide, proper handling procedures should be followed. First, it should be stored in a cool, dry, and well - ventilated place to prevent degradation and contamination.
Before use, it is recommended to wear appropriate personal protective equipment, such as gloves and safety glasses, to avoid direct contact with the skin and eyes. When weighing or transferring the product, use clean and dry utensils to ensure the accuracy of the amount used and prevent cross - contamination.
In a chemical reaction, the reaction conditions, such as temperature, pressure, and reaction time, should be strictly controlled according to the specific reaction requirements. Usually, it is necessary to conduct preliminary experiments to optimize the reaction conditions to obtain the best reaction results.
Case 1: Polymer Synthesis
A research team was working on developing a new type of high - strength engineering plastic. They used 4,4′-diaminobenzenesulphanilide as one of the monomers. By carefully controlling the reaction conditions, such as reacting it with a specific diacid chloride at a certain temperature and in the presence of a catalyst, they successfully synthesized a polymer with excellent mechanical properties. The resulting polymer had a high tensile strength and could withstand high temperatures, making it suitable for use in aerospace components.
Case 2: Pharmaceutical Intermediate
A pharmaceutical company was involved in the synthesis of a new anti - inflammatory drug. 4,4′-diaminobenzenesulphanilide was used as an intermediate. Through a series of chemical reactions, it was transformed into a key intermediate compound, which was then further processed to form the final drug. The use of this compound in the synthesis process improved the efficiency and yield of the drug synthesis.
Case 3: Dye Production
A dye manufacturer used 4,4′-diaminobenzenesulphanilide to synthesize a new type of blue dye. By reacting it with appropriate coupling agents and other chemical substances under specific reaction conditions, they obtained a dye with bright color and good light fastness. This dye was widely used in the textile industry for dyeing cotton and silk fabrics.
If you have any questions or need further information about High Quality 4,4′-diaminobenzenesulphanilide, please feel free to contact us. Our email is info@vivalr.com, and our phone number is (86) 15866781826.
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