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具有定制机械和阻隔性能的环保型真菌壳聚糖-二氧化硅双壳微胶囊,用于潜在的消费品应用。

Eco-Friendly Fungal Chitosan-Silica Dual-Shell Microcapsules with Tailored Mechanical and Barrier Properties for Potential Consumer Product Applications.

作者信息

Baiocco Daniele, Al-Sharabi Mohammed, Lobel Benjamin T, Cayre Olivier J, Routh Alexander F, Zhang Zhibing

机构信息

School of Chemical Engineering, University of Birmingham, Birmingham B15 2TT, U.K.

Department of Chemical Engineering and Biotechnology, University of Cambridge, Cambridge CB3 0AS, U.K.

出版信息

ACS Omega. 2024 Jun 20;9(26):28385-28396. doi: 10.1021/acsomega.4c02287. eCollection 2024 Jul 2.

Abstract

Commercial perfume microcapsules are becoming popular across the globe to fulfill consumers' demands. However, most of microcapsules rely on synthetic polymers and/or animal-sourced ingredients to form the shells. Therefore, replacement of the shell materials is imperative to minimize environmental microplastic pollution, as well as to meeting peoples' needs, religious beliefs, and lifestyles. Herein, we report a methodology to fabricate environmentally benign dual-shell (fungal chitosan-SiO) microcapsules laden with fragrance oil (hexyl salicylate). Anionically stabilized oil droplets were coated with fungal chitosan via interfacial electrostatic interactions at pH 2, which were then covered by an inorganic coating of SiO produced via external alkaline mineralization of sodium silicate. Core-shell microcapsules with a spherical morphology were achieved. Under compression, dual-shell chitosan-SiO microcapsules yielded a mean nominal rupture stress of 3.0 ± 0.2 MPa, which was significantly higher than that of single-shell microcapsules (1.7 ± 0.2 MPa). After 20 days in neutral pH water, only ∼2.5% of the oil was released from dual-shell microcapsules, while single-shell microcapsules cumulatively released more than 10%. These findings showed that the additional SiO coating significantly enhanced both mechanical and barrier properties of microcapsules, which may be appealing for multiple commercial applications, including cosmetics and detergents.

摘要

商业香水微胶囊在全球范围内越来越受欢迎,以满足消费者的需求。然而,大多数微胶囊依赖合成聚合物和/或动物源成分来形成外壳。因此,更换外壳材料对于最大限度地减少环境微塑料污染以及满足人们的需求、宗教信仰和生活方式至关重要。在此,我们报告了一种制备负载香料油(水杨酸己酯)的环境友好型双壳(真菌壳聚糖-SiO)微胶囊的方法。在pH 2条件下,通过界面静电相互作用用真菌壳聚糖包覆阴离子稳定的油滴,然后通过硅酸钠的外部碱性矿化生成的SiO无机涂层覆盖这些油滴。获得了具有球形形态的核壳微胶囊。在压缩下,双壳壳聚糖-SiO微胶囊的平均标称破裂应力为3.0±0.2 MPa,显著高于单壳微胶囊(1.7±0.2 MPa)。在中性pH水中放置20天后,双壳微胶囊中只有约2.5%的油释放出来,而单壳微胶囊累计释放超过10%。这些发现表明,额外的SiO涂层显著增强了微胶囊的机械性能和阻隔性能,这可能对包括化妆品和洗涤剂在内的多种商业应用具有吸引力。

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