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Cyclic cryogelation: a novel approach to control the distribution of carbonized cellulose fibres within polymer hydrogels

机译:循环冷却:一种控制聚合物水凝胶中碳化纤维素纤维分布的新方法

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摘要

The fabrication of conductive composite hydrogels is still challenging mainly because of the heterogeneous distribution of conductivity across the structure. Carbon substrates are mostly used to induce conductivity in the polymer hydrogels. The first step towards an effective induction of conductivity is to reach a uniform dispersion of carbon within the hosting matrix. This paper describes a new cyclic cryogelation method for the fabrication of conductive hydrogels using chitosan as the polymer matrix and conductive cellulose based fibres as the filler. This is achieved by the cyclic thermal treatment of gelatinized chitosan solution, and orderly control of the hydrogen bonding network formation before the solvent evaporation. These networks regularly limit the chain mobility of polymer across the hydrogel and restrict the agglomeration of fibres within the matrix. As a result, a significant improvement in the homogeneity of conductivity across the treated hydrogel was achieved, shown by thermal camera mapping. In addition, the thermally treated chitosan/20 wt% fibres demonstrated a tensile strength improvement of about 50% compared to that of the untreated composite. The proposed method offers a good control of fibre dispersion within the polymer matrix, and can serve as a practical design concept for 3D conductive hydrogels in biotechnological applications.
机译:导电复合水凝胶的制造主要是由于结构上的导电性的异质分布而挑战。碳基材主要用于诱导聚合物水凝胶中的电导率。朝向有效诱导电导率的第一步是在宿主基质内达到碳的均匀分散。本文介绍了一种新的环状冷冻滤波方法,用于使用壳聚糖作为聚合物基质和导电纤维素的基于填料的导电水凝胶的新的环状冷光凝集方法。这是通过凝胶化的壳聚糖溶液的循环热处理来实现,并有序地控制溶剂蒸发前的氢键网络形成。这些网络定期限制聚合物在水凝胶中的链迁移率,并限制基质内纤维的附聚。结果,通过热摄像机映射所示,实现了在处理过的水凝胶上进行的导电性均匀性的显着改善。此外,与未处理的复合材料相比,热处理的壳聚糖/ 20wt%纤维显示了约50%的拉伸强度提高。该方法提供了对聚合物基质内的纤维分散体的良好控制,并且可以作为生物技术应用中的3D导电水凝胶的实用设计理念。

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