Nanoenergy and Biosystem Lab

Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences
Article list

Zheng Q, Shi B, Fan F, et al.
Advanced Materials, 2014, 26(33):5851.

Implantable triboelectric nanogenerator" won the gold medal of CAI

CCTV:Innovative technology to light the future life——Wearable Pulse Sensor

"The inside story on wearable electronics" Nature December 01, 2015

In Vivo Self-Powered Wireless Cardiac Monitoring via Implantable Triboelectric Nanogenerator

Biodegradable triboelectric nanogenerator as a life-time designed implantable power source

Implantable Self-Powered  Long-Term  Nanoenergy Package” Project published

近日,中国科学院北京纳米能源与系统研究所李舟研究员团队,总结了基于可降解材料摩擦纳米发电机的相关进展。可降解摩擦发电材料从获取来源可分为:基于动物来源的可降解材料、基于植物来源的可降解材料以及人工合成可降解材料三种。

秋天总是短暂而迷人的,趁着满山的红叶和黄叶未落,趁着秋收的果实还挂在枝头,NBL组师生在11月1日到达神堂峪栈道,赶在第一缕冬风之前进行了秋游活动。

美国纳米技术与纳米科学网Nanowerk报道课题组关于"可擦写盲文显示系统"的最新工作,报道题目为"Concept design for a user-powered, refreshable Braille e-book reader for the blind"

近日,中国科学院北京纳米能源与系统研究所李舟课题组与陈翔宇课题组,以摩擦纳米发电机(TENG)为高压源,研制了一种基于介质弹性体的盲文显示系统,该系统具有简单轻巧、制作成本低,安全可靠等特点。可构建盲文显示阵列,展示了作为可擦写盲文显示系统的潜力,为设计便携式盲文电子书提供了新的技术和思路。该工作被多个公众号及新闻网报道。

祝贺NBL课题组曲学铖,石波璟文章"基于摩擦纳米发电机和介电弹性体的可刷新盲文显示系统"在Advanced Functional Materials发表

祝贺NBL课题组新进3篇ESI高被引和ESI热点文章,目前课题组高被引论文总数14篇,0.1%的热点论文 1篇

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Nanoenergy and Biosystem lab@binn.cas
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