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坚韧、透明、可3D打印且能自愈的聚乙二醇凝胶(PEG凝胶)。

Tough, Transparent, 3D-Printable, and Self-Healing Poly(ethylene glycol)-Gel (PEGgel).

作者信息

Wang Zhenwu, Cui Haijun, Liu Modan, Grage Stephan L, Hoffmann Maxi, Sedghamiz Elaheh, Wenzel Wolfgang, Levkin Pavel A

机构信息

Institute of Biological and Chemical Systems-Functional Molecular Systems (IBCS-FMS), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, Eggenstein-Leopoldshafen, 76344, Germany.

Karlsruhe Institute of Technology (KIT), Institute of Nanotechnology, Hermann-von-Helmholtz-Platz 1, Eggenstein-Leopoldshafen, 76344, Germany.

出版信息

Adv Mater. 2022 Mar;34(11):e2107791. doi: 10.1002/adma.202107791. Epub 2022 Feb 3.

Abstract

Polymer gels, such as hydrogels, have been widely used in biomedical applications, flexible electronics, and soft machines. Polymer network design and its contribution to the performance of gels has been extensively studied. In this study, the critical influence of the solvent nature on the mechanical properties and performance of soft polymer gels is demonstrated. A polymer gel platform based on poly(ethylene glycol) (PEG) as solvent is reported (PEGgel). Compared to the corresponding hydrogel or ethylene glycol gel, the PEGgel with physically cross-linked poly(hydroxyethyl methacrylate-co-acrylic acid) demonstrates high stretchability and toughness, rapid self-healing, and long-term stability. Depending on the molecular weight and fraction of PEG, the tensile strength of the PEGgels varies from 0.22 to 41.3 MPa, fracture strain from 12% to 4336%, modulus from 0.08 to 352 MPa, and toughness from 2.89 to 56.23 MJ m . Finally, rapid self-healing of the PEGgel is demonstrated and a self-healing pneumatic actuator is fabricated by 3D-printing. The enhanced mechanical properties of the PEGgel system may be extended to other polymer networks (both chemically and physically cross-linked). Such a simple 3D-printable, self-healing, and tough soft material holds promise for broad applications in wearable electronics, soft actuators and robotics.

摘要

聚合物凝胶,如水凝胶,已广泛应用于生物医学、柔性电子和软机器等领域。聚合物网络设计及其对凝胶性能的贡献已得到广泛研究。在本研究中,证明了溶剂性质对软聚合物凝胶力学性能和性能的关键影响。报道了一种基于聚乙二醇(PEG)作为溶剂的聚合物凝胶平台(PEGgel)。与相应的水凝胶或乙二醇凝胶相比,具有物理交联的聚(甲基丙烯酸羟乙酯-共丙烯酸)的PEGgel表现出高拉伸性和韧性、快速自愈和长期稳定性。根据PEG的分子量和比例,PEGgel的拉伸强度从0.22到41.3 MPa不等,断裂应变从12%到4336%,模量从0.08到352 MPa,韧性从2.89到56.23 MJ m 。最后,展示了PEGgel的快速自愈性能,并通过3D打印制造了一种自愈气动致动器。PEGgel系统增强的力学性能可能扩展到其他聚合物网络(化学和物理交联)。这种简单的可3D打印、自愈且坚韧的软材料在可穿戴电子、软致动器和机器人技术等广泛应用中具有广阔前景。

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