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一种选择性靶向锚定策略助力高效且稳定的理想带隙钙钛矿太阳能电池。

A Selective Targeting Anchor Strategy Affords Efficient and Stable Ideal-Bandgap Perovskite Solar Cells.

作者信息

Liang Zheng, Xu Huifen, Zhang Yong, Liu Guozhen, Chu Shenglong, Tao Yuli, Xu Xiaoxiao, Xu Shendong, Zhang Liying, Chen Xiaojing, Xu Baomin, Xiao Zhengguo, Pan Xu, Ye Jiajiu

机构信息

Key Laboratory of Photovoltaic and Energy Conservation Materials, Institute of Solid-State Physics, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, 230031, China.

University of Science and Technology of China, Hefei, 230026, China.

出版信息

Adv Mater. 2022 May;34(18):e2110241. doi: 10.1002/adma.202110241. Epub 2022 Apr 3.

Abstract

Mixed lead-tin perovskite solar cells (LTPSCs) with an ideal bandgap are demonstrated as a promising candidate to reach higher power conversion efficiency (PCE) than their Pb-counterparts. Herein, a Br-free mixed lead-tin perovskite material, FA MA Pb Sn I , with a bandgap of 1.33 eV, as a perovskite absorber, is selected. Through density functional theory calculations and optoelectronic techniques, it is demonstrated that both Pb- and Sn-related A-site vacancies are pushed into deeper energetic depth, causing severe nonradiative recombination. Hence, a selective targeting anchor strategy that employs phenethylammonium iodide and ethylenediamine diiodide as co-modifiers to selectively anchor with Pb- and Sn-related active sites and passivate bimetallic traps, respectively, is established. Furthermore, the selectivity of the molecular oriented anchor passivation is demonstrated through energetic depth specificity of Pb- and Sn-related traps. As a result, a substantially enhanced open-circuit voltage (V ) from 0.79 to 0.90 V for the LTPSCs is achieved, yielding a champion PCE of 22.51%, which is the highest PCE among the reported ideal-bandgap PSCs. The V loss is reduced to 0.43 V.

摘要

具有理想带隙的混合铅锡钙钛矿太阳能电池(LTPSCs)被证明是一种有前途的候选材料,有望实现比含铅同类电池更高的功率转换效率(PCE)。在此,选择了一种带隙为1.33 eV的无溴混合铅锡钙钛矿材料FAMA PbSnI作为钙钛矿吸收层。通过密度泛函理论计算和光电技术表明,与铅和锡相关的A位空位都被推到更深的能量深度,导致严重的非辐射复合。因此,建立了一种选择性靶向锚定策略,该策略采用苯乙铵碘化物和乙二胺二碘化物作为共改性剂,分别与铅和锡相关的活性位点选择性锚定并钝化双金属陷阱。此外,通过铅和锡相关陷阱的能量深度特异性证明了分子取向锚定钝化的选择性。结果,LTPSCs的开路电压(V)从0.79 V大幅提高到0.90 V,获得了22.51%的最佳PCE,这是报道的理想带隙PSC中最高的PCE。V损失降低到0.43 V。

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