Performance optimization of flexible a-Si:H solar cells with nanotextured plasmonic substrate by tuning the thickness of oxide spacer layer

Author:

Xiao Huapeng,Wang Jun,Huang Hongtao,Lu Linfeng,Lin Qingfeng,Fan Zhiyong,Chen Xiaoyuan,Jeong Chaehwan,Zhu Xufei,Li Dongdong

Funder

National Natural Science Foundation of China

Science & Technology Commission of Shanghai Municipality

Hong Kong Innovation Technology Fund

Korea government Ministry of Trade, Industry & Energy

Korea Institute of Industrial Technology through the international cooperative program

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,General Materials Science,Renewable Energy, Sustainability and the Environment

Reference37 articles.

1. Absolute limiting efficiencies for photovoltaic energy conversion

2. D.B.S. Benagli, E. Vallat, J. Meier, U. Kroll, J. Hötzel, J. Bailat, J. Steinhauser, M. Marmelo, G. Monteduro, L. Castens, 24th European Photovoltaic Solar Energy Conference, 21–25 September 2009, Hamburg, Germany, 2009, pp. 2293–2298.

3. Potential of amorphous silicon for solar cells

4. New progress in the fabrication of n–i–p micromorph solar cells for opaque substrates

5. Plasmonic Nanostructure Design for Efficient Light Coupling into Solar Cells

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