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Biotemplating: polysaccharides in materials engineering

机译:生物模板:材料工程中的多糖

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The generation of biominerals and hard tissue in nature is directed and templated by biomacromolecules. In many systems, polysaccharides play a significant role during the assembly of the inorganic phase. Polysaccharides exhibit a hierarchical multiscale order as well as self-assembly properties and they appear in a large variety of structures. The directed deposition of inorganic phases on polysaccharide templates is an interesting approach for the manufacturing of patterned functional materials. This paper highlights our recent developments on the bioinspired deposition and formation of inorganic phases on polysaccharide templates. Polysaccharides can be used at various structural levels from the molecular scale to three-dimensional parts in the millimetre range. The versatility of polysaccharide templating capabilities will be shown on one-dimensional cellulose nanocrystals for formation of luminescent inorganic nanotubes for optoelectronic applications. The replication of complex plant tissue and processed lignocellulosic materials such as paper and cardboard into carbide based engineering and functional ceramics will be presented. The developed methods for the mineralisation of inorganic phases on polysaccharides are adapted for an innovative bioinspired route involving phototactic microorganisms, which are useful for the light-induced fabrication of hierarchically structured functional materials.
机译:自然界中生物矿物和硬组织的产生是由生物大分子指导和模板化的。在许多系统中,多糖在无机相的组装过程中起着重要的作用。多糖表现出分级的多尺度顺序以及自组装特性,并且它们以各种各样的结构出现。无机相在多糖模板上的直接沉积是用于制造图案化功能材料的有趣方法。本文着重介绍了我们在多糖模板上以生物启发方式沉积和形成无机相的最新进展。多糖可以以各种结构水平使用,从分子规模到毫米范围内的三维部分。多糖模板化功能的多功能性将在一维纤维素纳米晶体上显示出来,以形成用于光电应用的发光无机纳米管。将介绍将复杂的植物组织和经过加工的木质纤维素材料(例如纸和纸板)复制到基于碳化物的工程陶瓷和功能陶瓷中的方法。用于在多糖上无机相矿化的已开发方法适用于涉及光战术微生物的创新生物启发途径,该途径可用于光诱导制造层次结构化功能材料。

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