Cetyl Trimethyl Ammonium Chloride (CTAC) CAS 112-02-7: Your Premier Supplier for High-Quality Surfactants and Antiseptics

Discover the versatile applications of Cetyl Trimethyl Ammonium Chloride (CTAC), a key cationic surfactant trusted by industries worldwide for its exceptional cleaning, conditioning, and antiseptic properties. As a leading manufacturer and supplier in China, we offer competitive pricing and consistent quality for your formulation needs.

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Key Advantages of Sourcing CTAC from Us

Superior Conditioning and Antistatic Properties

CTAC is a premium conditioning agent for hair care, providing excellent detangling, anti-frizz, and anti-static benefits. Professionals seeking to buy quality hair care ingredients will find our CTAC an indispensable component for advanced formulations.

Effective Antiseptic and Preservative Capabilities

With proven antimicrobial action, CTAC is an excellent choice for industrial cleaning and personal care formulations requiring preservation. Its ability to inhibit microbial growth ensures product integrity and extends shelf life.

Reliable Supply Chain and Competitive Pricing

As a direct manufacturer, we offer competitive prices for Cetyl Trimethyl Ammonium Chloride, ensuring your procurement budget is met. Partner with us to secure a stable supply of this vital chemical, manufactured to rigorous standards.

Extensive Applications of Cetyl Trimethyl Ammonium Chloride

Hair Care Formulations

CTAC is a cornerstone ingredient in hair conditioners, cream rinses, and shampoos, delivering superior softness, manageability, and shine.

Industrial Cleaning Products

Its surfactant properties make CTAC highly effective in a variety of industrial cleaning solutions, tackling grease and grime with ease.

Topical Antiseptics and Biocides

Utilized for its antimicrobial efficacy, CTAC serves as an active ingredient in topical antiseptics and disinfectants.

Textile and Leather Treatment

CTAC functions as an antistatic agent and plasticizer in textile and leather processing, improving material properties.