材料科学
过冷
软机器人
纳米技术
可穿戴计算机
可穿戴技术
复合材料
数码产品
流体学
液态金属
可伸缩电子设备
机械工程
计算机科学
电气工程
人工智能
执行机构
嵌入式系统
工程类
物理
热力学
作者
Mohammad H. Malakooti,Navid Kazem,Jiajun Yan,Chengfeng Pan,Eric J. Markvicka,Krzysztof Matyjaszewski,Carmel Majidi
标识
DOI:10.1002/adfm.201906098
摘要
Abstract Elastomers embedded with droplets of liquid metal (LM) alloy represent an emerging class of soft multifunctional composites that have potentially transformative impact in wearable electronics, biocompatible machines, and soft robotics. However, for these applications it is crucial for LM alloys to remain liquid during the entire service temperature range in order to maintain high mechanical compliance throughout the duration of operation. Here, LM‐based functional composites that do not freeze and remain soft and stretchable at extremely low temperatures are introduced. It is shown that the confinement of LM droplets to micro‐/nanometer length scales significantly suppresses their freezing temperature (down to −84.1 from −5.9 °C) and melting point (down to −25.6 from +17.8 °C) independent of the choice of matrix material and processing conditions. Such a supercooling effect allows the LM inclusions to preserve their fluidic nature at low temperatures and stretch with the surrounding polymer matrix without introducing significant mechanical resistance. These results indicate that LM composites with highly stabilized droplets can operate over a wide temperature range and open up new possibilities for these emerging materials, which are demonstrated with self‐powered wearable thermoelectric devices for bio‐sensing and personal health monitoring at low temperatures.
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