生物电子学
材料科学
自愈水凝胶
纳米技术
互连
生物加工
制作
生物相容性
柔性电子器件
数码产品
接口
组织工程
生物医学工程
计算机科学
电气工程
工程类
计算机硬件
生物传感器
医学
冶金
替代医学
病理
高分子化学
计算机网络
作者
Caicai Jiao,Qian Wang,Liangtao Li,Wuliang Chen,Jingjing Liu,Yifei Xu,Lingnan Song,Sijia Fu,Liang Hu
标识
DOI:10.1016/j.xcrp.2023.101640
摘要
Hydrogels have high water content, excellent biocompatibility, and tissue-matched compliance, which are favorable for interfacing with biological tissues, and they have attracted wide attention in soft electronics. However, current difficulties, such as interconnection issues with the metallic interface, and deficient fabrication strategies still pose great challenges. Here, a facile in situ 3D printing method is developed to fabricate liquid metal (LM)-hydrogel hybrids, which enable mechanical compliance to soft tissues (∼10 kPa), thus serving as the bio-interface of hydrogel bioelectronics or devices. Moreover, LM-hydrogel hybrids have good electrical interconnection with conventional electrical interfaces due to the excellent wetting and alloyed behavior of LM and commonly used metallic conductors. The LM-hydrogel hybrid can also be directly used for electronic components or devices without any further encapsulation or assembly process. Such LM-hydrogel hybrid via this convenient and almost automatic in situ 3D printing method may set up a multifunctional platform for hydrogel bioelectronics and devices.
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