Wang Xuelin, Liu Jing
Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing 100084, China.
Beijing Key Lab of CryoBiomedical Engineering and Key Lab of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Micromachines (Basel). 2016 Nov 30;7(12):206. doi: 10.3390/mi7120206.
This article presents an overview on typical properties, technologies, and applications of liquid metal based flexible printed electronics. The core manufacturing material-room-temperature liquid metal, currently mainly represented by gallium and its alloys with the properties of excellent resistivity, enormous bendability, low adhesion, and large surface tension, was focused on in particular. In addition, a series of recently developed printing technologies spanning from personal electronic circuit printing (direct painting or writing, mechanical system printing, mask layer based printing, high-resolution nanoimprinting, etc.) to 3D room temperature liquid metal printing is comprehensively reviewed. Applications of these planar or three-dimensional printing technologies and the related liquid metal alloy inks in making flexible electronics, such as electronical components, health care sensors, and other functional devices were discussed. The significantly different adhesions of liquid metal inks on various substrates under different oxidation degrees, weakness of circuits, difficulty of fabricating high-accuracy devices, and low rate of good product-all of which are challenges faced by current liquid metal flexible printed electronics-are discussed. Prospects for liquid metal flexible printed electronics to develop ending user electronics and more extensive applications in the future are given.
本文概述了基于液态金属的柔性印刷电子器件的典型特性、技术及应用。尤其重点介绍了核心制造材料——室温液态金属,目前主要以镓及其合金为代表,其具有优异的电阻率、极大的可弯曲性、低附着力和大表面张力等特性。此外,还全面综述了一系列最近开发的印刷技术,从个人电子电路印刷(直接绘画或书写、机械系统印刷、基于掩膜层的印刷、高分辨率纳米压印等)到三维室温液态金属印刷。讨论了这些平面或三维印刷技术以及相关液态金属合金油墨在制造柔性电子器件(如电子元件、医疗保健传感器和其他功能器件)中的应用。还讨论了当前液态金属柔性印刷电子器件面临的挑战,包括不同氧化程度下液态金属油墨在各种基板上显著不同的附着力、电路的脆弱性、制造高精度器件的困难以及良品率低等问题。展望了液态金属柔性印刷电子器件在未来开发终端用户电子产品及更广泛应用方面的前景。