CAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of China, Hefei230027, China.
ACS Appl Mater Interfaces. 2023 Feb 1;15(4):5856-5869. doi: 10.1021/acsami.2c19621. Epub 2023 Jan 20.
Liquid metal (LM) is increasingly employed as a conductive filler in soft and flexible elastomer composites owing to its favorable conductivity and liquid fluidity. However, the high density of LM inevitably increases the weight of composites, which brings limitations in large-area and weight-sensitive applications. This work reports a flexible and stretchable elastomer composite composed of pod-like contacting lightweight LM foam spheres and polydimethylsiloxane matrix (LMS/PDMS). The lightweight LMS reduces the amount of LM used in the preparation process while imparting good electrical conductivity and deformability to the composite. The different contact modes of LMS endow the final composites with diverse strain sensitivity. The mechanism of interfacial contact conduction between the LMS with different melting points has been systematically studied, and the result shows that the liquid-solid contact mode of LMS further improves the strain sensitivity of the composite. Moreover, the composite also has satisfactory electrothermal properties and the temperature can quickly reach 70 °C within 30 s, showing good applicability in electric heating. Finally, the composites containing LMS with different contact modes can be developed as multifunctional sensors to detect human activities, temperature variation, and even underwater vibration, demonstrating the great potential in next-generation sensors and electronics.
液态金属(LM)由于其良好的导电性和液体流动性,越来越多地被用作软弹性体复合材料中的导电填料。然而,LM 的高密度不可避免地增加了复合材料的重量,这在大面积和重量敏感的应用中带来了限制。本工作报道了一种由豆荚状接触式轻质 LM 泡沫球和聚二甲基硅氧烷基质(LMS/PDMS)组成的柔性可拉伸弹性体复合材料。轻质 LMS 减少了制备过程中 LM 的使用量,同时赋予复合材料良好的导电性和可变形性。LMS 的不同接触模式赋予最终复合材料不同的应变敏感性。系统研究了不同熔点 LMS 之间的界面接触传导机制,结果表明 LMS 的液-固接触模式进一步提高了复合材料的应变敏感性。此外,该复合材料还具有令人满意的电热性能,温度在 30 秒内可迅速达到 70°C,在电热应用中具有良好的适用性。最后,含有不同接触模式 LMS 的复合材料可开发为多功能传感器,以检测人体活动、温度变化甚至水下振动,在下一代传感器和电子产品中具有巨大的应用潜力。