In the dynamic landscape of chemical innovation, certain compounds stand out for their exceptional versatility and broad utility. Among these, Sodium Laulyl Carboxymethyl Imidazoline Acetate (SLCIA), identified by its CAS number 64041-76-5, emerges as a critical amphoteric surfactant with an impressive array of applications. This compound is highly valued across multiple industries, particularly in the production of personal care products and various cleaning agents, due to its unique chemical properties and gentle yet effective performance.
As a leading amphoteric surfactant, SLCIA exhibits a distinctive amber, water-soluble, transparent liquid appearance, indicative of its high purity, often reaching 99% with heavy metal content as low as 1ppm. Its chemical structure allows it to function effectively in a wide pH range, offering both mildness and robust performance. This dual capability is a primary reason for its widespread adoption in formulations where both efficacy and safety are paramount.
One of the most significant applications of Sodium Laulyl Carboxymethyl Imidazoline Acetate is its role as a key raw material in the development of non-irritating baby shampoos and skin cleansers. Its inherent mildness makes it an ideal choice for products designed for sensitive skin, including those for infants and individuals with dermatological sensitivities. Beyond baby care, it is also extensively used in adult shampoos and general skin cleansing agents, contributing to rich lather, effective cleaning, and a pleasant skin feel without causing dryness or irritation. This ability to deliver superior cleaning performance while maintaining skin compatibility underscores its value in the cosmetic and personal care sectors.
Furthermore, SLCIA is recognized as an excellent household and industrial detergent. Its exceptional foaming properties make it a valuable ingredient in dishwashing liquids, laundry detergents, and other household cleaning formulations. As a powerful foaming agent, it generates stable foam, crucial for effective cleaning. It also functions as an efficient emulsifier, allowing immiscible liquids to blend smoothly, which is vital in many industrial processes and product formulations. Additionally, its antistatic properties contribute to its utility in formulations designed to prevent static charge build-up on surfaces, enhancing cleanliness and user experience.
The production of Sodium Laulyl Carboxymethyl Imidazoline Acetate involves a carefully controlled multi-step synthesis process. The method typically begins with the reaction of 1 mol of lauric acid with 1.1 mol of hydroxyethyl diamine in a reactor. This mixture is heated and melted, followed by dehydration at a controlled temperature of 110-120 ℃ under alkaline pressure to generate an amide. Subsequently, the temperature is further increased to approximately 250 ℃ for continued dehydration, leading to the cyclization and formation of lauryl hydroxyethyl imidazoline. The final step involves a crucial reaction with 2 mol of chloroacetic acid, catalyzed by sodium hydroxide, to yield the desired quaternary ammonium salt, which is the finished product. This precise manufacturing process ensures the high quality and consistent performance of SLCIA.
At NINGBO INNO PHARMCHEM CO.,LTD., we are dedicated to providing high-quality Sodium Laulyl Carboxymethyl Imidazoline Acetate (CAS 64041-76-5). Our commitment to stringent quality control ensures that every batch meets the highest industry standards. SLCIA is typically supplied in 25kg drums, and proper storage conditions—avoiding high temperature and direct sunlight while keeping the product sealed—are recommended to maintain its integrity and shelf life. As a reputable manufacturer and supplier, NINGBO INNO PHARMCHEM CO.,LTD. offers competitive price options for bulk orders. Businesses looking to buy or purchase this essential surfactant can reach out to us for a detailed quotation and explore how our products can enhance their formulations. We are committed to fostering long-term partnerships by delivering superior chemical solutions.
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