Elzayat Asmaa M, Adam-Cervera Inés, Albus Marie, Cháfer Amparo, Badia José D, Pérez-Pla Francisco F, Muñoz-Espí Rafael
Institute of Materials Science (ICMUV), Universitat de València, C/Catedràtic José Beltrán 2, 46980 Paterna, Spain.
Physics Department, Faculty of Science, Mansoura University, Mansoura 35516, Egypt.
Polymers (Basel). 2023 Oct 17;15(20):4116. doi: 10.3390/polym15204116.
Polysaccharide/silica hybrid microcapsules were prepared using ionic gelation followed by spray-drying. Chitosan and alginate were used as biopolymer matrices, and in situ prepared silica was used as a structuring additive. The prepared microparticles were used in two very different applications: the encapsulation of hydrophilic molecules, and as a support for palladium nanoparticles used as catalysts for a model organic reaction, namely the reduction of -nitrophenol by sodium borhydride. In the first application, erioglaucine disodium salt, taken as a model hydrophilic substance, was encapsulated in situ during the preparation of the microparticles. The results indicate that the presence of silica nanostructures, integrated within the polymer matrix, affect the morphology and the stability of the particles, retarding the release of the encapsulated substance. In the second application, chloropalladate was complexed on the surface of chitosan microparticles, and palladium(II) was subsequently reduced to palladium(0) to obtain heterogeneous catalysts with an excellent performance.
采用离子凝胶法制备多糖/二氧化硅杂化微胶囊,随后进行喷雾干燥。壳聚糖和海藻酸盐用作生物聚合物基质,原位制备的二氧化硅用作结构添加剂。制备的微粒用于两种截然不同的应用:亲水分子的包封,以及作为钯纳米颗粒的载体,钯纳米颗粒用作模型有机反应(即硼氢化钠还原对硝基苯酚)的催化剂。在第一个应用中,作为模型亲水性物质的蓝光酸性染料二钠盐在微粒制备过程中原位包封。结果表明,整合在聚合物基质中的二氧化硅纳米结构的存在会影响颗粒的形态和稳定性,延缓包封物质的释放。在第二个应用中,氯钯酸盐在壳聚糖微粒表面络合,随后钯(II)还原为钯(0),以获得具有优异性能的非均相催化剂。