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  5. Enhancing the Efficiency of Silicon-Based Solar Cells by the Piezo-Phototronic Effect

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Article
en
2017

Enhancing the Efficiency of Silicon-Based Solar Cells by the Piezo-Phototronic Effect

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0 Files

en
2017
Vol 11 (2)
Vol. 11
DOI: 10.1021/acsnano.6b07960

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Zhong Lin Wang
Zhong Lin Wang

Beijing Institute of Technology

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Laipan Zhu
Longfei Wang
Caofeng Pan
+6 more

Abstract

Although there are numerous approaches for fabricating solar cells, the silicon-based photovoltaics are still the most widely used in industry and around the world. A small increase in the efficiency of silicon-based solar cells has a huge economic impact and practical importance. We fabricate a silicon-based nanoheterostructure (p+-Si/p-Si/n+-Si (and n-Si)/n-ZnO nanowire (NW) array) photovoltaic device and demonstrate the enhanced device performance through significantly enhanced light absorption by NW array and effective charge carrier separation by the piezo-phototronic effect. The strain-induced piezoelectric polarization charges created at n-doped Si-ZnO interfaces can effectively modulate the corresponding band structure and electron gas trapped in the n+-Si/n-ZnO NW nanoheterostructure and thus enhance the transport process of local charge carriers. The efficiency of the solar cell was improved from 8.97% to 9.51% by simply applying a static compress strain. This study indicates that the piezo-phototronic effect can enhance the performance of a large-scale silicon-based solar cell, with great potential for industrial applications.

How to cite this publication

Laipan Zhu, Longfei Wang, Caofeng Pan, Libo Chen, Fei Xue, Baodong Chen, Leijing Yang, Li Su, Zhong Lin Wang (2017). Enhancing the Efficiency of Silicon-Based Solar Cells by the Piezo-Phototronic Effect. , 11(2), DOI: https://doi.org/10.1021/acsnano.6b07960.

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Publication Details

Type

Article

Year

2017

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acsnano.6b07960

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