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一步法可编程电纺丝制备具有三维形状变形的壳聚糖不对称水凝胶。

One-step programmable electrofabrication of chitosan asymmetric hydrogels with 3D shape deformation.

机构信息

School of Resource and Environmental Science, Hubei International Scientific and Technological Cooperation Base of Sustainable Resource and Energy, Hubei Engineering Center of Natural Polymers-Based Medical Materials, Hubei Biomass-Resource Chemistry and Environmental Biotechnology Key Laboratory, Wuhan University, Wuhan 430079, China; Department of Agricultural, Food & Nutritional Science, University of Alberta, Edmonton, AB T6G 2P5, Canada.

Department of Agricultural, Food & Nutritional Science, University of Alberta, Edmonton, AB T6G 2P5, Canada; College of Food Science, South China Agricultural University, Guangzhou 510642, China.

出版信息

Carbohydr Polym. 2022 Feb 1;277:118888. doi: 10.1016/j.carbpol.2021.118888. Epub 2021 Nov 20.

Abstract

Programmable asymmetric hydrogels with tunable structure/shape or physical/chemical properties in response to external stimuli show particular significance in smart systems, but there is lack of simple, rapid, and cheap strategy to design such hydrogel systems. Herein, we report a one-step electrodeposition method to construct chitosan asymmetric hydrogels with tunable thickness and pore size that can be conveniently modulated by the process parameters. Our approach greatly simplifies the process of hydrogel preparation with complex shapes and asymmetric structure organization. The formation mechanism of asymmetric structure has been proposed, based on gelation behavior and entanglement of chitosan chains in the hydrogel-solution system under the electric field. By changing the shape of the electrodes, hydrogels with the morphology of strip, tube, flower, etc. can be obtained precisely and conveniently. They can perform programmable 2D to 3D smart dynamic deformation under pH and metal ions stimulation, indicating the broad application potential in soft robot and biosensor areas.

摘要

具有对外界刺激响应的可调结构/形状或物理/化学性质的可编程不对称水凝胶在智能系统中具有特殊意义,但缺乏设计这种水凝胶系统的简单、快速和廉价的策略。在此,我们报告了一种一步电沉积方法,可构建具有可调厚度和孔径的壳聚糖不对称水凝胶,其厚度和孔径可以通过工艺参数方便地调节。我们的方法大大简化了具有复杂形状和不对称结构组织的水凝胶的制备过程。基于电场下水凝胶-溶液体系中壳聚糖链的胶凝行为和缠结,提出了不对称结构的形成机制。通过改变电极的形状,可以精确方便地获得具有条状、管状、花状等形态的水凝胶。它们可以在 pH 值和金属离子刺激下进行可编程的 2D 到 3D 智能动态变形,表明在软机器人和生物传感器领域具有广阔的应用潜力。

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