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The Development of Biopolymer-Based Nanostructured Materials: Plastics, Gels, IPNs, and Nanofoams

机译:基于生物聚合物的纳米结构材料的发展:塑料,凝胶,IPN和纳米泡沫塑料

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The ability to design products with structural features on a nanometric scale is a major technology driver in materials research. Nanostructured materials are defined as materials with structural features on a sub-micron scale determining specific properties. They consist of materials such as metals, polymers, ceramics, composites and biomaterials. Future applications include ultra-precise drug-delivery, transparent nanofoams, nanoelectronics, coatings and ultraselective molecular sieves. The preparation of biopolymer-based nano-structured materials only recently gained attention. The main disadvantages of biopolymer materials like plastics and coatings are water sensitivity or low mechanical strength. New ways were developed, improving the properties of soft biopolymeric materials, such as the development of starch colloids, biopolymer interpenetrating networks and organic-inorganic hybrids. A description is given of several new classes of polysaccharide or protein based materials.
机译:设计具有纳米级结构特征的产品的能力是材料研究中的主要技术驾驶员。纳米结构材料被定义为具有结构特征的亚微米级测定特定性质的材料。它们由诸如金属,聚合物,陶瓷,复合材料和生物材料等材料组成。未来的应用包括超精密的药物 - 输送,透明纳米泡沫,纳米电子,涂料和超滤分子筛。基于生物聚合物的纳米结构材料的制备最近仅次于注意力。塑料和涂层等生物聚合物材料的主要缺点是水敏感性或低机械强度。开发了新的方式,改善了软生物聚合物材料的性质,例如淀粉胶体,生物聚合物间互持续网络和有机无机杂种的发育。给出了几种新类多糖或蛋白质基材料的描述。

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