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Spraying printing of liquid metal electronics on various clothes to compose wearable functional device

查看全文 作  者:GUI [1]Han;TAN [2]SiCong;WANG [2]Qian;YU [1]Yang;LIU [2]FuJun;LIN [1]Ju;LIU [1,2]Jing 高影响力作者 机构地区:[1]Department of Biomedical Engineering,School of Medicine,Tsinghua University,Beijing 100084,China;[2]Beijing Key Lab of Cryo Biomedical Engineering and Key Lab of Cryogenics,Technical Institute of Physics and Chemistry,Chinese Academy of Sciences,Beijing 100190,China高影响力机构 出  处:《Science China(Technological Sciences)》索引2017年第60卷第2期,共11页高影响力期刊 基  金:supported by Beijing Municipal Science and Technology Funding(Grant No.Z151100003715002);Key Project Funding of Chinese Academy of Sciences 摘  要:Liquid metal printing is emerging as an important tool for making wearable electronics. However, very limited academic efforts were made to fulfill such an increasing need. This paper is dedicated to present relatively complete theoretical and experimental characterizations for liquid metal spraying printing towards developing wearable electronic textile. The practical conditions of liquid metal droplets in the spraying printing process such as the jet velocity, the size distribution of droplets and their evenness degree, the morphology of droplets and their unrolling areas after impacting the substrate are quantified. The dominating factors, including the oxidation of liquid metal and the pressure force on cloth substrate during the impacting process, which ensure liquid metal firmly adhere to the cloth, are clarified. Further, various clothes are comparatively investigated to test their capabilities in printing liquid metal conductors, where the resistance difference can be over thousand-fold. In addition to interpreting the basic mechanisms and performances of the spraying printing, two programmable flexible circuits with specifically designed functions such as blinking LED lighting and wireless infrared temperature measurement via current manufacture technology were also demonstrated and evaluated for their washable ability. With the realization of wearable modules via liquid metal printing technology, it can be expected that flexible functional devices on cloth fabricated quickly and directly would witness more broad applications in the coming time. 关 键 词:液态金属 电子产品 功能器件 服装 喷印技术 金属液滴 金属印刷 制造技术
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