Laboratory for Advanced Interfacial Materials and Devices, Research Center for Smart Wearable Technology, Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hong Kong SAR, China.
State Key Laboratory of Luminescent Materials & Devices, Guangdong Provincial Key Laboratory of Fiber Laser Materials and Applied Techniques, Guangdong Engineering Technology Research and Development Center of Special Optical Fiber Materials and Devices, School of Materials Science and Engineering, South China University of Technology, Guangzhou, China.
Nat Mater. 2021 Jun;20(6):859-868. doi: 10.1038/s41563-020-00902-3. Epub 2021 Feb 18.
Stretchable electronics find widespread uses in a variety of applications such as wearable electronics, on-skin electronics, soft robotics and bioelectronics. Stretchable electronic devices conventionally built with elastomeric thin films show a lack of permeability, which not only impedes wearing comfort and creates skin inflammation over long-term wearing but also limits the design form factors of device integration in the vertical direction. Here, we report a stretchable conductor that is fabricated by simply coating or printing liquid metal onto an electrospun elastomeric fibre mat. We call this stretchable conductor a liquid-metal fibre mat. Liquid metal hanging among the elastomeric fibres self-organizes into a laterally mesh-like and vertically buckled structure, which offers simultaneously high permeability, stretchability, conductivity and electrical stability. Furthermore, the liquid-metal fibre mat shows good biocompatibility and smart adaptiveness to omnidirectional stretching over 1,800% strain. We demonstrate the use of a liquid-metal fibre mat as a building block to realize highly permeable, multifunctional monolithic stretchable electronics.
可拉伸电子产品在各种应用中得到了广泛的应用,例如可穿戴电子产品、贴肤电子产品、软体机器人和生物电子学。传统上使用弹性体薄膜制造的可拉伸电子设备存在透气性不足的问题,这不仅妨碍了佩戴舒适性并在长期佩戴时引发皮肤炎症,而且还限制了设备集成在垂直方向上的设计形式因素。在这里,我们报告了一种通过简单地将液态金属涂覆或印刷到静电纺丝弹性纤维垫上而制造的可拉伸导体。我们将这种可拉伸导体称为液态金属纤维垫。液态金属在弹性纤维之间悬挂,自行组织成横向网状和纵向褶皱结构,从而提供了高透气性、拉伸性、导电性和电稳定性。此外,液态金属纤维垫具有良好的生物相容性和对全方位拉伸 1800%应变的智能适应性。我们展示了使用液态金属纤维垫作为构建块来实现高度透气、多功能的整体式可拉伸电子产品。