Investigation of single field-effect surface passivation by constructing electrolyte/Si solar cell structure

W. Liu, J. Guan, J. Bian, Y. Zhao, Y. H. Liu, B. Zhang, A. Liu
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Abstract

The electrolyte/Si solar cell structure is proposed to investigate single field-effect surface passivation. The electrolyte-induced extra electrostatic field under the surface of Si solar cell can be controlled by adjusting voltages between the electrolyte and the surfaces of Si solar cell. Under positive gate voltages, an electron accumulation layer was formed under the electrolyte/Si interface leading to surface passivation of Si solar cell. Our results indicate that the proposed electrolyte/Si solar cell structure made it feasible to investigate single field-effect surface passivation because other interference factor could be eliminated, such as interfacial stress, surface defects and inter diffusion. With single field-effect surface passivation scheme, an increment in short-circuit current of Si solar cell from 6.1 mA to 6.37 mA was achieved.
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构建电解质/硅太阳能电池结构的单场效应表面钝化研究
提出了电解质/硅太阳能电池结构,以研究单场效应表面钝化。通过调节电解液与硅太阳电池表面之间的电压,可以控制硅太阳电池表面下电解质诱导的额外静电场。在正栅极电压下,电解质/硅界面下形成电子积累层,导致硅太阳电池表面钝化。我们的研究结果表明,电解质/硅太阳能电池结构使得研究单场效应表面钝化成为可能,因为可以消除其他干扰因素,如界面应力,表面缺陷和相互扩散。采用单场效应表面钝化方案,硅太阳电池的短路电流由6.1 mA增加到6.37 mA。
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