High-Purity Polyethylene Glycol Monocetyl Ether (CAS 9004-95-9): Your Trusted Nonionic Surfactant Supplier

Discover the versatile applications and superior quality of Polyethylene Glycol Monocetyl Ether. As a leading manufacturer and supplier, we provide high-purity solutions for your pharmaceutical, cosmetic, and industrial needs. Get a quote today!

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Key Advantages of Our Polyethylene Glycol Monocetyl Ether

Superior Solvency and Emulsification

Our Polyethylene Glycol Monocetyl Ether excels as a solubilizer and emulsifier, crucial for creating stable O/W emulsions in creams and lotions. It effectively aids in dissolving water-insoluble drugs, improving their absorption, making it a sought-after pharmaceutical intermediate.

Enhanced Product Performance in Daily Chemicals

Utilized as a key surfactant in shampoos and soaps, it reduces surface tension, promoting better foaming and cleaning. For manufacturers in the daily chemical sector, this means improved product texture and efficacy, a clear benefit when you buy from our extensive inventory.

Broad Industrial Applicability

Beyond personal care and pharma, this compound serves as an industrial lubricant and emulsifier, enhancing surface properties and liquid flow. If you are looking to buy industrial chemicals with proven performance, our product offers exceptional value.

Diverse Applications for Polyethylene Glycol Monocetyl Ether

Pharmaceutical Formulations

As a key excipient and solubilizer, it enhances the bioavailability of APIs and acts as a dispersant for drug particles. Pharmaceutical companies can rely on our supply for consistent quality.

Cosmetics and Personal Care

Essential in creams, lotions, shampoos, and soaps for its emulsifying, thickening, and foaming properties, improving product texture and sensory experience.

Industrial Processes

Functions as a lubricant and emulsifier in industrial settings, improving surface properties and liquid flow. Essential for manufacturers seeking reliable chemical auxiliaries.

Research and Development

Used as a model surfactant in studies, aiding in understanding micelle formation and surfactant interactions in various scientific research contexts.