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摘要:
Energy harvesting devices that prosper in harsh environments are highly demanded in a wide range of applications ranging from wearable and biomedical devices to self-powered and intelligent systems.Particularly,over the past several years,the innovation of triboelectric nanogenerators (TENGs) that efficiently convert ambient kinetic energy of water droplets or wave power to electricity has received growing attention.One of the main bottlenecks for the practical implications of such devices originates from the fast degradation of the physiochemical properties ofinterfacial materials under harsh environments.To overcome these challenges,here we report the design of a novel slippery lubricant-impregnated porous surface (SLIPS) based TENG,referred to as SLIPS-TENG,which exhibits many distinctive advantages over conventional design including optical transparency,configurability,self-cleaning,flexibility,and power generation stability,in a wide range of working environments.Unexpectedly,the slippery and configurable lubricant layer not only serves as a unique substrate for liquid/droplet transport and optical transmission,but also for efficient charge transfer.Moreover,we show that there exists a critical thickness in the liquid layer,below which the triboelectric effect is almost identical to that without the presence of such a liquid film.Such an intriguing charge transparency behavior is reminiscent of the wetting transparency and van der Waals potential transparency of graphene previously reported,though the fundamental mechanism remains to be elucidated.We envision that the marriage of these two seemingly totally different arenas (SLIPS and TENG) provides a paradigm shift in the design of robust and versatile energy devices that can be used as a clean and longer-lifetime alternative in various working environments.
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篇名 SLIPS-TENG: robust triboelectric nanogenerator with optical and charge transparency using a slippery interface
来源期刊 国家科学评论(英文版) 学科
关键词
年,卷(期) 2019,(3) 所属期刊栏目
研究方向 页码范围 540-550
页数 11页 分类号
字数 语种 英文
DOI 10.1093/nsr/nwz025
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引文网络交叉学科
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期刊影响力
国家科学评论(英文版)
月刊
2095-5138
10-1088/N
大16开
北京市
80-671
2014
eng
出版文献量(篇)
773
总下载数(次)
0
总被引数(次)
431
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