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STEARYL PG-DIMONIUM CHLORIDE PHOSPHATE.

Questionable / ANTISTATIC, HAIR CONDITIONING

STEARYL PG-DIMONIUM CHLORIDE PHOSPHATE is a multi-functional, naturally derived phospholipid from palm oil. It serves as a non-occlusive emollient, deeply moisturizing the skin by replacing vital polar lipids. Furthermore, it enhances product texture and stabilizes emulsions, contributing to formulation elegance and stability.

emollient moisturizing anti-inflammatory emulsion stabilizer texture enhancer thickener antistatic hair conditioning

Science

This ingredient functions as a phospholipid and diester phosphatide, leveraging multiple long-chain alkyl groups to deliver robust moisturization by mimicking and replacing the skin's natural polar lipids. Its positively charged quaternary ammonium structure facilitates adhesion to negatively charged skin surfaces, further aiding in conditioning. Beyond its primary emollient action, it also exhibits mild anti-inflammatory properties, promoting skin soothing and overall improvement.


Research

Low confidence
Effective range N/A
Optimal

N/A


Transparency

Not commonly dusted

The Formula

Solubility
Unknown
Optimal pH N/A
0 7 14

Stability

Highly compatible with the skin's natural pH mantle, STEARYL PG-DIMONIUM CHLORIDE PHOSPHATE is an effective emulsion stabilizer and can contribute to formulation thickening.


Safety

CIR Status
Safe with restrictions
Sensitization risk Low

EWG assesses a 'LOW' concern across categories including cancer, allergies, immunotoxicity, and developmental/reproductive toxicity. However, the CIR has issued general recommendations for similar compounds, noting they 'may be Unsafe in products left on skin and not rinsed off'. No specific maximum concentration or definitive SCCS/FDA status for this exact ingredient was found.


Your Skin

Yes Normal
Yes Dry
Yes Oily
Yes Sensitive
Irritancy Low
Comedogenicity Low

Our Assessment

Questionable

This palm oil-derived phospholipid offers valuable moisturizing and emollient benefits, alongside formulation stability, but its potential restrictions for leave-on applications, as highlighted by CIR for similar compounds, necessitate careful formulation consideration.


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