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便携式法拉第结太阳能可充电装置中的光电压记忆效应。

Photovoltage memory effect in a portable Faradaic junction solar rechargeable device.

作者信息

Wang Pin, Xue Mengfan, Jiang Dongjian, Yang Yanliang, Zhang Junzhe, Dong Hongzheng, Sun Gengzhi, Yao Yingfang, Luo Wenjun, Zou Zhigang

机构信息

Eco-materials and Renewable Energy Research Center (ERERC), Jiangsu Key Laboratory for Nano Technology, National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University, Nanjing, 210093, China.

College of Engineering and Applied Sciences, Nanjing University, Nanjing, 210093, China.

出版信息

Nat Commun. 2022 May 10;13(1):2544. doi: 10.1038/s41467-022-30346-z.

Abstract

Two-electrode solar rechargeable device is one of the promising technologies to address the problem of solar energy storage in large scale. However, the mechanism of dark output voltage remains unclear and the low volumetric energy density also limits its practical applications. Herein, we report that a Si/CoO/KBi/MnO Faradaic junction device exhibits a photovoltage memory effect, that is, the dark output voltage can precisely record the value of the photovoltage in the device. To investigate the mechanism of the effect, we develop an open circuit potential method to real-time monitor the photo charge and dark discharge processes in the Faradaic junction device. This effect leads to minimized interface energy loss in the Faradaic junction device, which achieves much higher performances than the devices without the effect. Moreover, we realize a portable device with a record value of the dark volumetric energy density (∼1.89 mJ cm) among all reported two-electrode solar rechargeable devices. These results offer guidance to improve the performance of a solar rechargeable device and design other photoelectric devices for new applications.

摘要

双电极太阳能可充电装置是解决大规模太阳能存储问题的一项有前景的技术之一。然而,暗输出电压的机制仍不清楚,且低体积能量密度也限制了其实际应用。在此,我们报道一种Si/CoO/KBi/MnO法拉第结装置呈现出光电压记忆效应,即暗输出电压能够精确记录装置中的光电压值。为了研究该效应的机制,我们开发了一种开路电位方法来实时监测法拉第结装置中的光充电和暗放电过程。这种效应使得法拉第结装置中的界面能量损失最小化,与没有该效应的装置相比,其性能要高得多。此外,在所有已报道的双电极太阳能可充电装置中,我们实现了一种具有创纪录暗体积能量密度值(约1.89 mJ/cm³)的便携式装置。这些结果为提高太阳能可充电装置的性能以及设计用于新应用的其他光电器件提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/682a/9090830/b11d70129ca2/41467_2022_30346_Fig1_HTML.jpg

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