Highly improved passivation of PECVD p-type TOPCon by suppressing plasma-oxidation ion-bombardment-induced damages

钝化 等离子体增强化学气相沉积 材料科学 薄脆饼 饱和电流 等离子体 开路电压 图层(电子) 分析化学(期刊) 纳米技术 光电子学 化学 电压 电气工程 物理 有机化学 量子力学 工程类
作者
Dian Ma,Wei Liu,Mingjing Xiao,Zhenhai Yang,Zunke Liu,Mingdun Liao,Qingling Han,Hao Cheng,Haiyang Xing,Zetao Ding,Baojie Yan,Yude Wang,Yuheng Zeng,Jichun Ye
出处
期刊:Solar Energy [Elsevier BV]
卷期号:242: 1-9 被引量:29
标识
DOI:10.1016/j.solener.2022.07.003
摘要

Tunnel oxide passivated contact (TOPCon) integrated with a plasma-enhanced chemical vapor deposition (PECVD) boron-doped polysilicon has the potential to achieve high-efficiency and low-cost solar cells. In this contribution, we explore the feasibility of using PECVD technology to prepare high-performance p-type TOPCon (p-TOPCon) by growing two-step oxidation (TSO), i.e., a nitric acid oxidation (NAOS) SiOx without ion-bombardment followed by a plasma-assist N2O oxidation (PANO) SiOx layer. The experimental results reveal that for p-TOPCon structures on polished wafers with the conventional plasma oxidation SiOx, raising plasma oxidation powers to increase the thickness and oxidation degree of SiOx cannot ensure high-quality passivation due to the appearance of high-density defects caused by plasma ion-bombardment. In the presence of an additional NAOS SiOx layer, ion-bombardment-induced defects can be effectively suppressed, leading to a remarkable improvement in passivation properties. In detail, the optimal p-TOPCon with TSO SiOx achieves a maximum implied open-circuit voltage (iVoc) of ∼712 mV and a minimum single-sided saturation current density (J0,s) of ∼10 fA/cm2, manifesting an increment of iVoc by ∼10 mV, and a reduction of J0,s by ∼5 fA/cm2. Finally, the numerical simulations reveal that n-type Si solar cells featuring p-TOPCon rear junction and Al electrode could receive an efficiency of 24.6% based on the state-of-the-art device fabrication technology. In general, this work provides a new way to boost the passivation quality of PECVD p-TOPCon devices.
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