材料科学
多孔性
胶粘剂
毛细管作用
纳米技术
制作
数码产品
复合材料
灵活性(工程)
焦耳加热
液态金属
蒸发
杰纳斯
表面能
可穿戴技术
多孔介质
柔性电子器件
纳米孔
基质(水族馆)
热的
超级电容器
润湿
作者
Jinbo Li,Wenzhao Li,Hongbo Zhang,Yi Yang,Yuanjin Zhao
出处
期刊:
[Wiley]
日期:2026-06-01
卷期号:5 (3): e70040-e70040
摘要
Liquid metal (LM)-derived electronic skin (e-skin) exhibits significant potential in the domains of human-machine interfaces, health monitoring and energy management. Herein, we introduce a cost-effective paradigm of LMs-derived e-skin featuring anti-freezing capability, efficient thermal management, and motion detection. The inexpensive and eco-friendly porous pomelo pith (PP) is employed as the substrate for the patterning of LM and as the physical scaffold for adhesive hydrogels. The unique porous architecture of the PP provides a natural template for the integration of LM and hydrogels, which facilitates the creation of electronic devices with improved flexibility and adhesion. The diverse patterning of nickel (Ni)-doped LM on the rough and porous pomelo pith surface is facilitated by the attractive force of a magnetic field applied below. The adhesive pre-gel is readily drawn into the pores of the pomelo pith due to capillary action. The resulting LM/PP hydrogel electronics are capable of rapid and stable Joule heating behavior and reliable motion detection. Additionally, the incorporation of glycerol endows this e-skin with superior freezing and desiccation resistance. Thus, this facile fabrication strategy successfully integrates excellent conductivity, adhesion, and environmental resilience, offering a promising paradigm for advanced wearable electronics.
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