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首页> 外文期刊>Pure and Applied Chemistry >Design and properties of biopolymer-silica hybrid materials: The example of pectin-based biodegradable hydrogels
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Design and properties of biopolymer-silica hybrid materials: The example of pectin-based biodegradable hydrogels

机译:生物聚合物-二氧化硅杂化材料的设计和性能:基于果胶的可生物降解水凝胶的例子

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摘要

The association of natural polymers with silica is a fruitful strategy to design novel hybrid structures with potential applications in the fields of biotechnology, medicine, and environmental sciences. Here we illustrate the principles of formation, the structure, and the properties of such biohybrid systems by the specific example of silica-pectin porous materials. The influence of the silica source, i.e., aqueous silicates and tetraethoxysilane (TEOS), was more specifically addressed. The alkoxide precursor may be associated with the polysaccharide in a wide range of concentrations. In contrast, the high initial viscosity and fast condensation rate of silicates limits the range of accessible compositions. Owing to weak interactions between the mineral and organic components, silicification does not improve the thermal stability of the polymer but has a strong impact on the water stability of the materials, which depends on the silica source. It is shown that the stability of the silica-pectin hybrid materials during enzymatic degradation is optimum for low carbohydrate content and high silica content, independently of the inorganic precursor.
机译:天然聚合物与二氧化硅的结合是设计新颖的杂化结构的有效策略,在生物技术,医学和环境科学领域具有潜在的应用前景。在这里,我们通过二氧化硅-果胶多孔材料的具体例子来说明这种生物杂交系统的形成原理,结构和性能。更具体地说明了二氧化硅源即含水硅酸盐和四乙氧基硅烷(TEOS)的影响。醇盐前体可以以宽范围的浓度与多糖结合。相反,硅酸盐的高初始粘度和快速缩合速率限制了可及组合物的范围。由于矿物和有机成分之间的相互作用较弱,硅化作用不会提高聚合物的热稳定性,但会对材料的水稳定性产生很大影响,而水稳定性取决于二氧化硅的来源。结果表明,二氧化硅-果胶杂化材料在酶促降解过程中的稳定性对于低碳水化合物含量和高二氧化硅含量而言是最佳的,而与无机前体无关。

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