Kinetic photovoltage along semiconductor-water interfaces

Author:

Li JidongORCID,Long Yuyang,Hu Zhili,Niu Jiyuan,Xu Tiezhu,Yu Maolin,Li Baowen,Li Xuemei,Zhou JianxinORCID,Liu YanpengORCID,Wang ChengORCID,Shen LaifaORCID,Guo WanlinORCID,Yin JunORCID

Abstract

AbstractExternal photo-stimuli on heterojunctions commonly induce an electric potential gradient across the interface therein, such as photovoltaic effect, giving rise to various present-day technical devices. In contrast, in-plane potential gradient along the interface has been rarely observed. Here we show that scanning a light beam can induce a persistent in-plane photoelectric voltage along, instead of across, silicon-water interfaces. It is attributed to the following movement of a charge packet in the vicinity of the silicon surface, whose formation is driven by the light-induced potential change across the capacitive interface and a high permittivity of water with large polarity. Other polar liquids and hydrogel on silicon also allow the generation of the in-plane photovoltage, which is, however, negligible for nonpolar liquids. Based on the finding, a portable silicon-hydrogel array has been constructed for detecting the shadow path of a moving Cubaris. Our study opens a window for silicon-based photoelectronics through introducing semiconductor-water interfaces.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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