Detailed loss analysis of 24.8% large-area screen-printed n-type solar cell with polysilicon passivating contact

Author:

Zheng Peiting,Yang Jie,Wang Zhao,Wu Lu,Sun Haijie,Chen Shi,Guo Yao,Xia Han,Phang Sieu PhengORCID,Wang Er-Chien,Stuckelberger Josua,Sio Hang Cheong,Zhang Xinyu,Macdonald Daniel,Jin Hao

Funder

Australian Renewable Energy Agency

Australian Centre for Advanced Photovoltaics

Publisher

Elsevier BV

Subject

General Physics and Astronomy,General Energy,General Engineering,General Materials Science,General Chemistry

Reference25 articles.

1. International Technology Roadmap for Photovoltaic (ITRPV);Fischer,2021

2. 24.58% total area efficiency of screen-printed, large area industrial silicon solar cells with the tunnel oxide passivated contacts (i-TOPCon) design;Chen;Sol. Energy Mater. Sol. Cells,2020

3. Exceeding 23% and mass production of p-Cz Q. ANTUM bifacial solar cells;Stenzel,2019

4. Solar cell efficiency tables (version 57);Green,2021

5. Light and Elevated Temperature Induced Degradation in Mono-Like and Float-Zone Silicon: Correlations to Material Types, Silicon Nitride Films and Dopant Diffusion;Kang;J. Photovoltaics,2021

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