METHOXY PEG-114/POLYEPSILON CAPROLACTONE ●
TL;DR. This ingredient functions mainly as a polymeric solubilizer, encapsulation carrier, and film-forming conditioning agent. It helps disperse poorly water-soluble materials and can leave a light, flexible conditioning film on skin or hair.
What does METHOXY PEG-114/POLYEPSILON CAPROLACTONE do in a cosmetic formula?
This ingredient functions mainly as a polymeric solubilizer, encapsulation carrier, and film-forming conditioning agent. It helps disperse poorly water-soluble materials and can leave a light, flexible conditioning film on skin or hair.
Is METHOXY PEG-114/POLYEPSILON CAPROLACTONE clean?
It has clean-standard friction because it is a synthetic ethoxylated polymer and may require tight controls for residual ethylene oxide and 1,4-dioxane. Direct irritation potential is generally expected to be low at cosmetic use levels, but its manufacturing route places it outside some stricter clean frameworks.
Is METHOXY PEG-114/POLYEPSILON CAPROLACTONE sustainable?
This material is synthetic and typically relies on petrochemical or mixed-origin feedstocks. One segment is designed to break down by hydrolysis and biodegradation, while the hydrophilic polyether segment is less aligned with ready biodegradability expectations.
Is METHOXY PEG-114/POLYEPSILON CAPROLACTONE COSMOS-approved?
This ingredient is generally not permitted under COSMOS-natural or COSMOS-organic standards because it is an ethoxylated synthetic polymer. Its Green Chemistry profile is mixed, with useful low-volatility polymer performance but reliance on reactive synthetic monomers and limited ready-biodegradability alignment.
How does METHOXY PEG-114/POLYEPSILON CAPROLACTONE work chemically?
The molecule is an amphiphilic block copolymer with a roughly 5 kDa capped hydrophilic polyether segment linked to a hydrophobic, hydrolysable aliphatic polyester segment, which supports micelle or nano-dispersion formation. Performance is driven by block ratio, temperature, shear, and compatibility with surfactants or electrolytes rather than by pH neutralization.
Last updated 2026-08-20