6-Trimethylbicyclohept-2-Ylcyclohexanol ●
TL;DR. This ingredient is used as a fragrance component, typically to add woody, sandalwood-like odor notes to personal care formulas. It does not serve a primary skin-care function beyond scent design.
What does 6-Trimethylbicyclohept-2-Ylcyclohexanol do in a cosmetic formula?
This ingredient is used as a fragrance component, typically to add woody, sandalwood-like odor notes to personal care formulas. It does not serve a primary skin-care function beyond scent design.
Is 6-Trimethylbicyclohept-2-Ylcyclohexanol clean?
From a clean-beauty perspective, it sits in the compromised fragrance category because sensitization screening and disclosure expectations vary by brand and region. It is not one of the classic EU 26 fragrance allergens, but it may still be evaluated under broader fragrance-allergen and IFRA safety frameworks.
Is 6-Trimethylbicyclohept-2-Ylcyclohexanol sustainable?
This material is generally a synthetic fragrance molecule rather than a minimally processed botanical extract. Its sustainability profile depends on feedstock origin and manufacturing controls, and fragrance molecules with bulky cyclic structures may have slower biodegradation than simple plant-derived alcohols or acids.
Is 6-Trimethylbicyclohept-2-Ylcyclohexanol COSMOS-approved?
It is not typically aligned with COSMOS-natural or COSMOS-organic when made as a conventional synthetic fragrance component. From a Green Chemistry view, the main limitations are non-renewable or mixed feedstocks and uncertain biodegradation, although low use levels reduce total formula load.
How does 6-Trimethylbicyclohept-2-Ylcyclohexanol work chemically?
The molecule is a bulky bicyclic-terpene-like alcohol attached to a cyclohexanol motif, a structure that supports low volatility and long-lasting woody odor character. It is used at fragrance-dosing levels, usually as part of a perfume concentrate, and formulation attention centers on solubility in the fragrance phase, IFRA category limits, and potential oxidation or impurity control.
Last updated 2026-05-14