Yang Qun, Hu Genghao, Qiu Huili, Mia Rajib, Zhang Hongjuan, Pei Liujun, Wang Jiping
School of Textiles and Fashion, Shanghai University of Engineering Science, Shanghai 201620, China.
Shanghai Engineering Research Center for Clean Production of Textile Chemistry, Shanghai 201620, China.
Polymers (Basel). 2023 Sep 7;15(18):3686. doi: 10.3390/polym15183686.
Microcapsules are small particles that can effectively protect a core material from degradation. Microcapsules with double capsule walls can improve stability and reduce breakage due to the fact that the physical and chemical properties of double-walled materials can complement each other, thus enhancing the quality and applicability of a microcapsule. Microcapsules can achieve controlled release of core materials by using a temperature-sensitive wall material. In this research, gelatin was used as the inner wall material for these double-walled microcapsules. The outer wall material was a composite material prepared by the reaction of a hydroxyl group in gum arabic with an amino group in N-isopropylacrylamide (NIPAM) in the presence of N, N'-methylene bisacrylamide (BIS), while lavender fragrance oil served as the core material. A complex coalescence method was used for the preparation of microcapsules with double capsule walls. The effects of different proportions of gum arabic to NIPAM on the core loading, microcapsule yield and thermal stability of microcapsules were studied in detail. Additionally, the stability of these fragrance microcapsules with double capsule walls in different solvents and pH values was evaluated. The sustained release properties and mechanism of cotton fabrics treated with prepared fragrance microcapsules were investigated. The results show that the microcapsules prepared with a 10:1 ratio of NIPAM to gum arabic have good temperature responsiveness. Therefore, clothing treated with microcapsules with temperature-sensitive wall materials can ensure that the human body has a fresh and pleasant smell in the case of perspiring in summer.
微胶囊是能够有效保护芯材不被降解的小颗粒。具有双层囊壁的微胶囊可以提高稳定性并减少破损,因为双层壁材料的物理和化学性质可以相互补充,从而提高微胶囊的质量和适用性。微胶囊可以通过使用温度敏感型壁材来实现芯材的控释。在本研究中,明胶被用作这些双层微胶囊的内壁材料。外壁材料是由阿拉伯胶中的羟基与N-异丙基丙烯酰胺(NIPAM)中的氨基在N,N'-亚甲基双丙烯酰胺(BIS)存在下反应制备的复合材料,而薰衣草香精油用作芯材。采用复合凝聚法制备双层微胶囊。详细研究了阿拉伯胶与NIPAM不同比例对微胶囊的芯材负载量、微胶囊产率和热稳定性的影响。此外,还评估了这些双层香精微胶囊在不同溶剂和pH值下的稳定性。研究了用制备的香精微胶囊处理的棉织物的缓释性能及机理。结果表明,以NIPAM与阿拉伯胶质量比为10:1制备的微胶囊具有良好的温度响应性。因此,用具有温度敏感型壁材的微胶囊处理的衣物能够确保人体在夏季出汗时保持清新宜人的气味。