State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin 150001, China.
National Innovation Center for Advanced Medical Devices, Shenzhen, 457001, China.
Mater Horiz. 2022 Mar 7;9(3):961-972. doi: 10.1039/d1mh02030g.
Hydrogel-based flexible electronics have been of widespread interest in recent years. However, current hydrogel electronics have limitations, such as poor biocompatibility, non-reusability, low electrical response to deformation and being single-function. GelMA is a gelatin-based hydrogel that has been widely used in the biological field, such as in tissue repair and drug delivery. Could it be a good choice for high biocompatibility wearable electronics? Here, by controlling the replacement rate of amine and hydroxy functionalities, we made the common brittle GelMA into a highly stretchable hydrogel. And we report for the first time GelMA hydrogel electronics with liquid metals (LMGE), which could be fabricated by simply injecting liquid metals into the internal microchannels of the GelMA hydrogels (GelMA-30). With the unique biocompatibility, outstanding air and ion permeability, and great mechanical properties of GelMA-30, as well as the low toxicity, high conductivity and high rheology of liquid metals, LMGE can not only monitor movement changes and even the heartbeat of rats, but can also be used as a wireless monitor to supervise secretions produced during human exercise. The design of LMGE provides a general strategy for the manufacture of bio-flexible hydrogel electronics, which opens the way for the development of multi-functional biomimetic materials for integrated monitoring and repair for biomedical applications.
水凝胶基柔性电子产品近年来受到广泛关注。然而,目前的水凝胶电子产品存在一些局限性,如生物相容性差、不可重复使用、对变形的电响应低以及功能单一。GelMA 是一种基于明胶的水凝胶,已广泛应用于生物领域,如组织修复和药物输送。它是否是高生物相容性可穿戴电子产品的一个好选择?在这里,我们通过控制胺基和羟基官能团的取代率,将常见的脆性 GelMA 制成了一种高拉伸性的水凝胶。我们首次报道了具有液态金属(LMGE)的 GelMA 水凝胶电子器件,只需将液态金属注入 GelMA 水凝胶的内部微通道中即可制备 GelMA-30。GelMA-30 具有独特的生物相容性、出色的空气和离子通透性以及优异的机械性能,液态金属具有低毒性、高导电性和高流变性,LMGE 不仅可以监测大鼠的运动变化甚至心跳,还可以用作无线监测器来监测人体运动时产生的分泌物。LMGE 的设计为生物柔性水凝胶电子产品的制造提供了一种通用策略,为用于生物医学应用的集成监测和修复的多功能仿生材料的发展开辟了道路。