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◆ Carbohydrate Polymer Technologies and Applications2026-05-14· Aerogel

Starch aerogel enables efficient and prolonged fragrance delivery

Fang Wei, Jiahui Yu, 徐秀娟, Rui Wang, Qidong Zhang, Wu Fan, Guobi Chai, Qingzhao Shi, Shan Wang

原始摘要(英文原文)· Original abstract
The use of sustained-release carriers to encapsulate fragrances effectively mitigates their high volatility and chemical instability. This study aims to investigate the feasibility of employing biomass-derived starch aerogels (SA) as a novel sustained-release carrier for fragrances. First, SA with a porosity of 85.33% and a specific surface area of 229.89 m²/g were prepared using supercritical carbon dioxide (scCO 2 ) drying. Further, linalool, geraniol, linalyl acetate, citral, and limonene were incorporated into the SA by scCO 2 impregnation, with adsorption amounts reaching 168.40 to 336.00 mg/g. Moreover, fragrances with higher polarity and lower steric hindrance achieve higher loading efficiency in SA. Temperature-controlled release experiments indicate that SA exhibits prominent sustained release effect on fragrances. Especially for polar fragrances, free fragrances are completely released within 5 min at 60 °C, In contrast, after loading into SA, the release duration of polar fragrances is prolonged to 40–60 min. This study provides a theoretical foundation and technical support for the development of high-loading, eco-friendly fragrance delivery systems with sustained-release functionality.
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Starch aerogel enables efficient and prolonged fragrance delivery — 科研速览 Science Skim