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Layer-by-Layer Assembled Bacterial Cellulose/Graphene Oxide Hydrogels with Extremely Enhanced Mechanical Properties

机译:具有极大增强的机械性能的逐层组装的细菌纤维素/氧化石墨烯水凝胶

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摘要

Uniform dispersion of two-dimensional (2D) graphene materials in polymer matrices remains challenging. In this work, a novel layer-by-layer assembly strategy was developed to prepare a sophisticated nanostructure with highly dispersed 2D graphene oxide in a three-dimensional matrix consisting of one-dimensional bacterial cellulose (BC) nanofibers. This method is a breakthrough, with respect to the conventional static culture method for BC that involves multiple in situ layer-by-layer assembly steps at the interface between previously grown BC and the culture medium. In the as-prepared BC/GO nanocomposites, the GO nanosheets are mechanically bundled and chemically bonded with BC nanofibers via hydrogen bonding, forming an intriguing nanostructure. The sophisticated nanostructure of the BC/GO leads to greatly enhanced mechanical properties compared to those of bare BC. This strategy is versatile, facile, scalable, and can be promising for the development of high-performance BC-based nanocomposite hydrogels.
机译:二维(2D)石墨烯材料在聚合物基质中的均匀分散仍然具有挑战性。在这项工作中,开发了一种新颖的逐层组装策略,以在由一维细菌纤维素(BC)纳米纤维组成的三维矩阵中制备具有高度分散的2D氧化石墨烯的复杂纳米结构。相对于传统的BC静态培养方法,该方法是一项突破,它涉及在先前生长的BC和培养基之间的界面处进行多个原位逐层组装步骤。在制备的BC / GO纳米复合材料中,将GO纳米片机械捆绑并通过氢键与BC纳米纤维化学键合,形成一个引人入胜的纳米结构。与裸露的BC相比,BC / GO的复杂纳米结构可大大提高机械性能。该策略是通用的,简便的,可扩展的,对于开发基于BC的高性能纳米复合水凝胶很有希望。

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