研究目的
Investigating the performance potential of TOPCon technology in evolutionary upgrades of PERC solar cells, focusing on both electrical gains and optical losses due to parasitic absorption.
研究成果
The study concludes that TOPCon upgrades can boost PERC efficiency by approximately 1%abs, but the final device is strongly limited by losses in the p-type c-Si bulk and phosphorus-doped front emitter. The evolutionary TOPCon upgrades may be relevant for future improved p-PERC cells, offering an alternative to n-type TOPCon cells with boron emitter.
研究不足
The study is limited by the assumptions made in the simulation parameters, which may differ from actual cells from different manufacturers. Additionally, the focus on p-type material and phosphorus diffused front emitter may not capture the full potential of n-type TOPCon cells with boron emitter.
1:Experimental Design and Method Selection:
Numerical device simulation was used to quantify the performance potential, focusing on an evolutionary upgrade of a busbarless p-type bifacial PERC technology. The simulation model included optical modeling with Sentaurus TCAD using raytracing combined with the transfer-matrix-method (TMM) and electrical modeling with Quokka
2:Sample Selection and Data Sources:
Experimental test structures were prepared to verify the optical simulation model, including structures with and without TOPCon on the rear side.
3:List of Experimental Equipment and Materials:
The simulation utilized parameters for optical and electrical modeling, including doping concentrations, layer thicknesses, and contact resistivities.
4:Experimental Procedures and Operational Workflow:
The simulation approach involved modeling the optical properties of the cell architectures, including parasitic absorption in the polysilicon layers, and performing three-dimensional electrical modeling of the cell architectures.
5:Data Analysis Methods:
The influence of free-carrier absorption in polysilicon on the solar cell optics was characterized, and the performance potential of TOPCon upgrades was analyzed through efficiency and power output simulations.
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