化学
吸附
水溶液
化学工程
海藻酸钙
扫描电子显微镜
十二烷基硫酸钠
羟甲基
聚合
钠
核化学
复合数
聚电解质
高分子化学
钙
表面电荷
色谱法
油滴
精油
氨
硫酸钠
粒径
控制释放
表面改性
氯化银
喷雾干燥
作者
Wenfeng Xie,Z. X. Li,Yuwei Hao,Shouzheng Jiao,Siqiao Zhang,Fanghua Pan,Lu Han,Ruping Liu,Zhicheng Sun
标识
DOI:10.1002/slct.202503878
摘要
ABSTRACT In this study, grapefruit essential oil (GEO)‐loaded microcapsules encapsulated within silver/calcium alginate (Ag/CA) composite shells were successfully fabricated through an electrostatic spray technique. First, a pre‐emulsion of GEO was prepared in the presence of sodium dodecyl sulfate (SDS) and sodium alginate (SA). Subsequently, the pre‐emulsion was sprayed into an aqueous calcium chloride solution using electrostatic spray technique in the form of microdroplets, yielding calcium alginate (CA) gel microcapsules encapsulating GEO. Then, the previously prepared CA@GEO microcapsules were introduced into hydroxymethyl aminomethane (Tris) buffer solution, followed by the addition of dopamine hydrochloride. This enabled dopamine adsorption onto the microcapsule surface and subsequent polymerization to form a polydopamine layer. Finally, the dopamine hydrochloride‐treated CA@GEO microcapsules were placed into a silver ammonia solution, where coordination interaction occurred between the polydopamine (PDA) on the microcapsule surface and silver ammonia particles. Subsequent in situ reduction, facilitated by glucose acting as a reducing agent, resulted in the formation of a silver shell on the microcapsule surface. The morphology and structure of the microcapsules were comprehensively characterized using scanning electron microscopy (SEM), particle size distribution analysis, x‐ray photoelectron spectroscopy (XPS), etc. Moreover, the sustained release and antibacterial properties of Ag/CA@GEO microcapsules were investigated.
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