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LAURTRIMONIUM CHLORIDE.

Valuable CAS 112-00-5 / ANTISTATIC, PRESERVATIVE, SURFACTANT - EMULSIFYING

Laurtrimonium Chloride is a multifunctional quaternary ammonium compound, primarily valued in cosmetic formulations for its ability to reduce static, stabilize immiscible liquids as an emulsifier, and protect products from microbial spoilage as a preservative.

emulsifying preservative antistatic

Science

Within cosmetic formulations, Laurtrimonium Chloride effectively reduces electrostatic charges, especially on hair, contributing to manageability. As an emulsifying agent, its molecular structure, possessing both lipophilic and hydrophilic parts, reduces interfacial tension between oil and water, thereby promoting stable mixture formation. It also functions as a preservative by inhibiting the growth of microorganisms, extending the product's shelf-life.


Research

Insufficient-data confidence
Effective range N/A
Optimal

N/A


Transparency

Not commonly dusted

The Formula

Solubility
Both
Optimal pH N/A
0 7 14

Safety

CIR Status
Safe with restrictions
Max tested
0.1%
Sensitization risk Moderate

The Cosmetic Ingredient Review (CIR) Expert Panel has concluded that 'Trimonium' ingredients, including Laurtrimonium Chloride, are safe for use in cosmetics when formulated to be non-irritating. European Union regulations permit its use as a preservative up to a maximum concentration of 0.1% in finished cosmetic products. Similar quaternary ammonium compounds have been noted by the SCCS for a maximum level of 0.1% for non-preservative uses in leave-on formulations. While EWG rates its irritation potential as low, it is identified as a potential irritant and allergen, with a low-moderate risk for allergies/immunotoxicity, necessitating careful formulation.


Your Skin

No Normal
No Dry
No Oily
No Sensitive
Irritancy Low
Comedogenicity Unknown

Our Assessment

Valuable

Laurtrimonium Chloride is a valuable functional ingredient, primarily utilized for its antistatic, emulsifying, and preservative properties in cosmetic formulations, provided it is used within regulatory concentration limits to minimize potential irritation or sensitization risks.


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