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具有超分子添加剂驱动适应性的3D可打印活性水凝胶

3D Printable Active Hydrogels with Supramolecular Additive-Driven Adaptiveness.

作者信息

Li Xiao, Guan Zhecun, Zhao Jiayu, Bae Jinhye

机构信息

Materials Science & Engineering Program, University of California San Diego, La Jolla, CA, 92093, USA.

Department of NanoEngineering, University of California San Diego, La Jolla, CA, 92093, USA.

出版信息

Small. 2024 Jul;20(28):e2311164. doi: 10.1002/smll.202311164. Epub 2024 Jan 31.

Abstract

Smart hydrogels are a promising candidate for the development of next-generation soft materials due to their stimuli-responsiveness, deformability, and biocompatibility. However, it remains challenging to enable hydrogels to actively adapt to various environmental conditions like living organisms. In this work, supramolecular additives are introduced to the hydrogel matrix to confer environmental adaptiveness. Specifically, their microstructures, swelling behaviors, mechanical properties, and transparency can adapt to external environmental conditions. Moreover, the presence of hydrogen bonding provides the hydrogel with applicable rheological properties for 3D extrusion printing, thus allowing for the facile preparation of thickness-dependent camouflage and multistimuli responsive complex. The environmentally adaptive hydrogel developed in this study offers new approaches for manipulating supramolecular interactions and broadens the capability of smart hydrogels in information security and multifunctional integrated actuation.

摘要

智能水凝胶因其刺激响应性、可变形性和生物相容性,是开发下一代软材料的有前途的候选材料。然而,使水凝胶能够像生物体一样主动适应各种环境条件仍然具有挑战性。在这项工作中,将超分子添加剂引入水凝胶基质以赋予其环境适应性。具体而言,它们的微观结构、溶胀行为、机械性能和透明度能够适应外部环境条件。此外,氢键的存在为水凝胶提供了适用于3D挤出打印的流变特性,从而能够轻松制备厚度依赖性伪装和多刺激响应复合物。本研究中开发的环境适应性水凝胶为操纵超分子相互作用提供了新方法,并拓宽了智能水凝胶在信息安全和多功能集成驱动方面的能力。

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