Ding Zetao, Kan Chenxia, Jiang Shengguo, Zhang Meili, Zhang Hongyu, Liu Wei, Liao Mingdun, Yang Zhenhai, Hang Pengjie, Zeng Yuheng, Yu Xuegong, Ye Jichun
Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, Zhejiang, China.
University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2024 Sep 30;15(1):8453. doi: 10.1038/s41467-024-52309-2.
Tunnel oxide passivated contact (TOPCon) silicon solar cells are rising as a competitive photovoltaic technology, seamlessly blending high efficiency with cost-effectiveness and mass production capabilities. However, the numerous defects from the fragile silicon oxide/c-Si interface and the low field-effect passivation due to the inadequate boron in-diffusion in p-type polycrystalline silicon (poly-Si) passivated contact reduce their open-circuit voltages (Vs), impeding their widespread application in the promising perovskite/silicon tandem solar cells (TSCs) that hold a potential to break 30% module efficiency. To address this, we have developed a highly passivated p-type TOPCon structure by optimizing the oxidation conditions, boron in-diffusion, and aluminium oxide hydrogenation, thus pronouncedly improving the implied V (iV) of symmetric samples with p-type TOPCon structures on both sides to 715 mV and the V of completed double-sided TOPCon bottom cells to 710 mV. Consequently, integrating with perovskite top cells, our proof of concept of 1 cm n-i-p perovskite/silicon TSCs exhibit Vs exceeding 1.9 V and a high efficiency of 28.20% (certified 27.3%), which paves a way for TOPCon cells in the commercialization of future tandems.
隧穿氧化层钝化接触(TOPCon)硅太阳能电池正崛起成为一种具有竞争力的光伏技术,它将高效率与成本效益及大规模生产能力完美融合。然而,脆弱的氧化硅/c-Si界面存在大量缺陷,且由于p型多晶硅(poly-Si)钝化接触中硼扩散不足导致场效应钝化较低,这降低了其开路电压(Vs),阻碍了它们在有望突破30%组件效率的钙钛矿/硅叠层太阳能电池(TSCs)中的广泛应用。为解决这一问题,我们通过优化氧化条件、硼扩散和氧化铝氢化,开发出了一种高度钝化的p型TOPCon结构,从而显著提高了两侧均具有p型TOPCon结构的对称样品的隐含V(iV)至715 mV,以及完整双面TOPCon底部电池的V至710 mV。因此,与钙钛矿顶部电池集成后,我们1 cm n-i-p钙钛矿/硅TSCs的概念验证展示出超过1.9 V的Vs和28.20%的高效率(认证效率为27.3%),这为TOPCon电池在未来叠层电池商业化中铺平了道路。