Variable-Temperature Electron Transport and Dipole Polarization Turning Flexible Multifunctional Microsensor beyond Electrical and Optical Energy

Variable-Temperature Electron Transport and Dipole Polarization Turning Flexible Multifunctional Microsensor beyond Electrical and Optical Energy
复制标题

变温电子传输和偶极极化使柔性多功能微传感器超越电能和光能

DOI:
10.1002/adma.201907156
复制
发表时间:
2020-01-29
期刊:
影响因子:
29.4
通讯作者:
Yuan, Jie
Yuan, Jie
中科院分区:
材料科学1区
文献类型:
--
作者:
Cao, Mao-Sheng;Wang, Xi-Xi;Yuan, Jie

文献摘要

被引文献

相似文献

人类正在经历一场以人工智能、量子信息技术、虚拟现实等为重点的决定性变革,这与智能纳微器件密不可分。然而,“大数据”的蓬勃发展带来了更大的挑战,越来越多的电磁辐射。在此,提出了一种创新的柔性多功能微传感器,开辟了智能设备的新视野。仅在一个像素内集成了“无串扰”多重感知和绿色电磁干扰屏蔽,灵敏度令人满意,信息反馈速度快。重要的是,通过对变温电磁响应的深入了解,微传感器巧妙地将电磁辐射的紧迫威胁转化为“财富”,进一步整合了自身的力量。这一成果将刷新研究人员对下一代器件的认识,为航空航天工程、遥感、通信、医疗、仿生机器人、假肢等开辟新的方向。
Humans are undergoing a fateful transformation focusing on artificial intelligence, quantum information technology, virtual reality, etc., which is inseparable from intelligent nano-micro devices. However, the booming of "Big Data" brings about an even greater challenge by growing electromagnetic radiation. Herein, an innovative flexible multifunctional microsensor is proposed, opening up a new horizon for intelligent devices. It integrates "non-crosstalk" multiple perception and green electromagnetic interference shielding only in one pixel, with satisfactory sensitivity and fast information feedback. Importantly, beneficial by deep insight into the variable-temperature electromagnetic response, the microsensor tactfully transforms the urgent threat of electromagnetic radiation into "wealth," further integrating self-power. This result will refresh researchers' realization of next-generation devices, ushering in a new direction for aerospace engineering, remote sensing, communications, medical treatment, biomimetic robot, prosthetics, etc.