140-11-4 NATURAL OC BENZYL ACETATE

TL;DR. This ingredient is used mainly as a fragrance material, adding sweet, floral, fruity character to perfumes, creams, hair care, and body products. It can also contribute slight solvent-like blending support within fragrance concentrates.

What does 140-11-4 NATURAL OC BENZYL ACETATE do in a cosmetic formula?

This ingredient is used mainly as a fragrance material, adding sweet, floral, fruity character to perfumes, creams, hair care, and body products. It can also contribute slight solvent-like blending support within fragrance concentrates.

Is 140-11-4 NATURAL OC BENZYL ACETATE clean?

From a clean-beauty perspective, it is generally accepted when disclosed and used within IFRA guidance, but it sits in the fragrance category, where sensitization and transparency questions matter. It is not one of the more scrutinized preservative or silicone-type materials, though very sensitive users may react to scented formulas.

Is 140-11-4 NATURAL OC BENZYL ACETATE sustainable?

This ingredient-origin grades are typically sourced from botanical fragrance materials or compliant biotransformation routes, while conventional grades can also be made from petrochemical feedstocks. It is expected to biodegrade by ester hydrolysis and microbial metabolism, with low concern for long-term environmental persistence when used at typical fragrance levels.

Is 140-11-4 NATURAL OC BENZYL ACETATE COSMOS-approved?

It can align with COSMOS-it or COSMOS-organic fragrance rules when the grade meets it fragrance criteria and documentation requirements. From a Green Chemistry view, the best fit comes from renewable feedstocks, simple ester chemistry, and good biodegradability, while synthetic nature-identical grades have weaker alignment.

How does 140-11-4 NATURAL OC BENZYL ACETATE work chemically?

This molecule is a small aromatic ester, which explains its volatility, oily-liquid character, and use as a top-to-middle fragrance note. It is generally stable in mildly acidic to neutral formulas, but ester hydrolysis can increase under strongly acidic or alkaline conditions, so it is usually added through the fragrance concentrate at low finished-product levels.

Last updated 2026-08-19