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一种包含微超级电容器、光电探测器和无线充电线圈的灵活集成系统。

A Flexible Integrated System Containing a Microsupercapacitor, a Photodetector, and a Wireless Charging Coil.

机构信息

Center for Nanoscale Characterization and Devices (CNCD), Wuhan National Laboratory for Optoelectronics (WNLO) and School of Physics, Huazhong University of Science and Technology (HUST) , Luoyu Road 1037, Wuhan 430074, P.R. China.

School of Material Science and Engineering, Guangxi Nonferrous Metals Mineral and Materials, Collaborative Innovation Center, Guilin University of Technology , Jian'gan Road 12, Guilin, Guangxi 541004, P.R. China.

出版信息

ACS Nano. 2016 Dec 27;10(12):11249-11257. doi: 10.1021/acsnano.6b06326. Epub 2016 Nov 16.

Abstract

Nowadays, the integrated systems on a plane substrate containing energy harvesting, energy storing, and working units are strongly desired with the fast development of wearable and portable devices. Here, a simple, low cost, and scalable strategy involving ink printing and electrochemical deposition is proposed to fabricate a flexible integrated system on a plane substrate containing an all-solid-state asymmetric microsupercapacitor (MSC), a photoconduct-type photodetector of perovskite nanowires (NWs), and a wireless charging coil. In the asymmetric MSCs, MnO-PPy and VO-PANI composites are used as positive and negative electrodes, respectively. Typical values of energy density in the range of 15-20 mWh cm at power densities of 0.3-2.5 W cm with an operation potential window of 1.6 V are achieved. In the system, the wireless charging coil receives energy from a wireless power transmitter, which then can be stored in the MSC to drive the photoconductive detector of perovskite NWs in sequence. The designed integrated system exhibits a stable photocurrent response comparable with the detector driven by an external power source. This research provides an important routine to fabricate integrated systems.

摘要

如今,随着可穿戴和便携式设备的快速发展,人们强烈希望在平面衬底上集成能量收集、能量存储和工作单元的系统。在这里,提出了一种简单、低成本和可扩展的策略,涉及喷墨印刷和电化学沉积,以在平面衬底上制造包含全固态不对称微超级电容器(MSC)、钙钛矿纳米线(NWs)的光电导型光电探测器和无线充电线圈的柔性集成系统。在不对称 MSC 中,MnO-PPy 和 VO-PANI 复合材料分别用作正负极。在功率密度为 0.3-2.5 W cm,工作电位窗口为 1.6 V 的范围内,实现了能量密度在 15-20 mWh cm 之间的典型值。在该系统中,无线充电线圈从无线电源发射器接收能量,然后可以将其存储在 MSC 中,以依次驱动钙钛矿 NWs 的光电导探测器。所设计的集成系统表现出与由外部电源驱动的探测器相当的稳定光电流响应。这项研究为制造集成系统提供了一个重要的常规方法。

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