Instituto Ciencia de los Materiales de Sevilla, ICMS, (CSIC-US), Avda. Americo Vespucio, 49, 41092, Sevilla, Spain.
Laboratorio de Rayos X, CITIUS, (Universidad de Sevilla), Avda. Reina Mercedes, 4, 41012, Sevilla, Spain.
Sci Rep. 2019 Jul 16;9(1):10265. doi: 10.1038/s41598-019-46495-z.
Bionanocomposites based on layered inorganic components, as clays, and polymers of biological origin, as chitosan, have a major impact in medical and environmental fields, being economical and environmentally friendly materials. Na-Mn micas (n = 2 and 4) with controlled surface charge, high cation exchange capacity and swelling behaviour, are attractive inorganic composite components that exhibit improved adsorption properties compared to other inorganic solids which makes them potentially useful for bionanocomposites. The goal of this research was to explore the potential use of those synthetic brittle micas to form eco-friendly bionanocomposites with chitosan biopolymer. Hence, chitosan-mica bionanocomposites were prepared by ion-exchange reaction between chitosan solution and synthetic high charge mica. X-ray diffraction, Fourier transform infrared spectroscopy, thermal analysis, MAS-NMR spectroscopy and zeta-potential have been employed for bionanocomposites characterization. The results showed that the adsorption of chitosan is effective, although a chitosan portion remains in the outer surface being hydrogen-bonded to the tetrahedral sheet of the silicate.
基于层状无机成分(如粘土)和生物来源聚合物(如壳聚糖)的生物纳米复合材料在医学和环境领域具有重要影响,它们是经济且环保的材料。具有受控表面电荷、高阳离子交换容量和溶胀行为的 Na-Mn 云母(n=2 和 4)是有吸引力的无机复合成分,与其他无机固体相比,其吸附性能得到了改善,这使得它们在生物纳米复合材料中具有潜在的用途。本研究的目的是探索这些合成脆性云母在与壳聚糖生物聚合物形成环保型生物纳米复合材料方面的潜在用途。因此,通过壳聚糖溶液与合成高电荷云母之间的离子交换反应制备了壳聚糖-云母生物纳米复合材料。采用 X 射线衍射、傅里叶变换红外光谱、热分析、MAS-NMR 光谱和动电电势对生物纳米复合材料进行了表征。结果表明,尽管壳聚糖的一部分仍留在外表面上并与硅酸盐的四面体片形成氢键,但壳聚糖的吸附是有效的。