首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Preparation and characterization of double-shelled avermectin microcapsules based on copolymer matrix of silica-glutaraldehyde-chitosan
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Preparation and characterization of double-shelled avermectin microcapsules based on copolymer matrix of silica-glutaraldehyde-chitosan

机译:基于二氧化硅-戊二醛-壳聚糖共聚物基质的阿维菌素双壳微胶囊的制备与表征

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Controlled release formulation (CRF) of pesticides is highly desirable for attaining the most effective utilization of the pesticide as well as reducing environmental pollution. Due to the selective permeation and protection properties of the semi-permeable membrane, pesticide microcapsules have been widely used. In this work, we developed a novel two-step method for synthesizing highly stable silica-glutaraldehyde-chitosan composite avermectin microcapsules. The silica shell was formed through the hydrolysis and polycondensation of tetraethyl orthosilicate (TEOS) at the oil droplet-water interface by using TEOS as the silica precursor and hexadecyl trimethyl ammonium chloride as a surfactant. Then the silica shell was modified with 3-aminopropyltriethoxysilane. Chitosan nanospheres were prepared by adjusting the pH value of the solution and then cross-linking with modified silica at the surface of the silica shell in the presence of glutaraldehyde to form double-shelled avermectin microcapsules. The results showed that the resulting microcapsules had a remarkable loading ability for avermectin (about 40% w/w) and can protect avermectin against photo- and thermal degradation effectively. Compared to single-shelled microcapsules, the double-shelled ones had better controlled release properties under all conditions. The present study provides a novel CRF comprising a pesticide which is light-sensitive or high temperature-sensitive, and a method for preparing the improved pesticide formulation so that the pesticide release rate and release period could be adjusted.
机译:为了获得最有效的农药利用以及减少环境污染,非常需要农药的控释制剂(CRF)。由于半透膜的选择性渗透和保护特性,农药微胶囊已被广泛使用。在这项工作中,我们开发了一种新颖的两步法,用于合成高度稳定的二氧化硅-戊二醛-壳聚糖复合阿维菌素微胶囊。通过使用TEOS作为二氧化硅前体和十六烷基三甲基氯化铵作为表面活性剂,通过在油滴-水界面处的原硅酸四乙酯(TEOS)的水解和缩聚来形成二氧化硅壳。然后将二氧化硅壳用3-氨基丙基三乙氧基硅烷改性。通过调节溶液的pH值,然后在戊二醛存在下,在二氧化硅壳的表面与改性二氧化硅交联,以形成壳状阿维菌素微胶囊,制备了壳聚糖纳米球。结果表明,所得的微胶囊具有对阿维菌素的显着负载能力(约40%w / w),并且可以有效地保护阿维菌素免受光和热降解。与单壳微胶囊相比,双壳微胶囊在所有条件下均具有更好的控释性能。本研究提供了一种新型的CRF,其包括对光敏感或对高温敏感的农药,以及一种制备改进的农药制剂的方法,从而可以调节农药的释放速率和释放时间。

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