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Design Optimization of the Front Side in n-Type TOPCon Solar Cell

Sungjin Jeong, Hongrae Kim, Sungheon Kim, Suresh Kumar Dhungel, Youngkuk Kim, Junsin Yi
J Electr Electron Mater 2022;35(6):616-621.
Published online: November 1, 2022
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Numerical simulation is a good way to predict the conversion efficiency of solar cells without a direct experimentation and to achieve low cost and high efficiency through optimizing each step of solar cell fabrication. TOPCon industrial solar cells fabricated with n-type silicon wafers on a larger area have achieved a higher efficiency than p-type TOPCon solar cells. Electrical and optical losses of the front surface are the main factors limiting the efficiency of the solar cell. In this work, an optimization of boron-doped emitter surface and front electrodes through numerical simulation using “Griddler” is reported. Through the analysis of the results of simulation, it was confirmed that the emitter sheet resistance of 150 Ω/sq along the front electrodes having a finger width of 20 μm, and the number of finger lines ~130 for silicon wafer of M6 size is an optimized technology for the front emitter surface of the n-type TOPCon solar cells that can be developed.

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Design Optimization of the Front Side in n-Type TOPCon Solar Cell
J Electr Electron Mater. 2022;35(6):616-621.   Published online November 1, 2022
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Design Optimization of the Front Side in n-Type TOPCon Solar Cell
J Electr Electron Mater. 2022;35(6):616-621.   Published online November 1, 2022
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