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T-BUTYLACRYLAMIDE/DIMETHYLACRYLAMIDE/PEG-14 DIACRYLATE CROSSPOLYMER.

Valuable / HAIR FIXING

This sophisticated crosspolymer is engineered to create a flexible, resistant film on the skin's surface, crucial for product longevity and sensory experience. Beyond its film-forming capabilities, it adeptly stabilizes emulsions and modulates viscosity, ensuring the consistent integrity and texture of cosmetic formulations.

Film-forming agent Emulsion stabilizer Viscosity increasing agent Hair fixative

Science

T-BUTYLACRYLAMIDE/DIMETHYLACRYLAMIDE/PEG-14 DIACRYLATE CROSSPOLYMER functions primarily through the creation of a durable, flexible polymeric film upon application. This mechanism contributes significantly to the wear-resistance and extended performance of skincare products. Additionally, its inherent polymeric structure serves to stabilize complex emulsions and precisely increase the viscosity of liquid formulations, thereby enhancing product consistency and sensory appeal.


Research

Low confidence
Effective range N/A
Optimal

N/A


Transparency

Not commonly dusted

As a crosspolymer acting primarily as a film-former and rheology modifier, this ingredient is not typically subject to 'dusting' considerations in the same manner as potent active compounds.


The Formula

Solubility
Water
Optimal pH N/A
0 7 14

Safety

CIR Status
Safe as used
Sensitization risk Low

The Cosmetic Ingredient Review (CIR) Expert Panel has concluded that this ingredient is safe under current practices of use and concentration. Its molecular weight is approximately 5000 g/mol, with a rigorously low percentage of monomer impurities below 500 Da, specifically 0.0005%, indicating minimal potential for skin penetration or sensitization. No specific SCCS or FDA GRAS classifications were identified.


Your Skin

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

Our Assessment

Valuable

This crosspolymer is a valuable excipient, enhancing formulation stability and wear properties through its film-forming and rheology-modifying capabilities, supported by a confirmed safety profile.


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