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通过共自组装分子重建空穴传输层用于高性能倒置钙钛矿太阳能电池

Reconstruction of Hole Transport Layer via Co-Self-Assembled Molecules for High-Performance Inverted Perovskite Solar Cells.

作者信息

Liu Weihong, Zang Yue, Tu Yibo, Wang Yida, Zhu Zhikang, Zhu Chenyang, Yan Wensheng

机构信息

Institute of Carbon Neutrality and New Energy, School of Electronics and Information, Hangzhou Dianzi University, Hangzhou, 310018, P. R. China.

出版信息

Small. 2025 Jan;21(3):e2408314. doi: 10.1002/smll.202408314. Epub 2024 Nov 17.

Abstract

Adjusting the hole transport layer (HTL) to optimize its interface with perovskite is crucial for minimizing interface recombination, enhancing carrier extraction, and achieving efficient and stable inverted perovskite solar cells (PSCs). However, as a commonly used HTL, the self-assemble layer (SAM) of [2-(3,6-dimethoxy-9H-carbazol-9-yl)ethyl] phosphonic acid (MeO-2PACz) tends to form clusters and micelles during the deposition process, leading to inadequate coverage of the ITO substrate. Here, a Co-SAM strategy is employed by incorporating 4-mercaptobenzoic acid (SBA) and 4-trifluoromethyl benzoic acid (TBA) as additives into MeO-2PACz to fabricate a Co-SAM-based HTL. The introduced additive can interact with MeO-2PACz, facilitating cluster dispersion and thereby enabling better deposition on ITO for improved HTL coverage. Moreover, Co-SAM exhibits superior energy level alignment with perovskite to enhance interfacial contact and improve carrier extraction efficiency as well as promote growth of bottom perovskite grains. As a result, an impressive increase of the power conversion efficiency (PCE) from 21.34% to 23.31% is achieved in the inverted device based on the Co-SAM HTL of MeO-2PACz+TBA while maintaining ≈90% of its initial efficiency under continuous operation at 1-sun.

摘要

调整空穴传输层(HTL)以优化其与钙钛矿的界面对于最小化界面复合、增强载流子提取以及实现高效稳定的倒置钙钛矿太阳能电池(PSC)至关重要。然而,作为一种常用的HTL,[2-(3,6-二甲氧基-9H-咔唑-9-基)乙基]膦酸(MeO-2PACz)的自组装层(SAM)在沉积过程中容易形成聚集体和胶束,导致氧化铟锡(ITO)衬底覆盖不足。在此,通过将4-巯基苯甲酸(SBA)和4-三氟甲基苯甲酸(TBA)作为添加剂掺入MeO-2PACz中,采用共混自组装层(Co-SAM)策略来制备基于Co-SAM的HTL。引入的添加剂可以与MeO-2PACz相互作用,促进聚集体分散,从而使其在ITO上更好地沉积,以提高HTL覆盖率。此外,Co-SAM与钙钛矿表现出优异的能级排列,以增强界面接触并提高载流子提取效率,同时促进底部钙钛矿晶粒的生长。结果,基于MeO-2PACz+TBA的Co-SAM HTL的倒置器件的功率转换效率(PCE)从21.34%显著提高到23.31%,并且在1个太阳的连续运行下保持其初始效率的约90%。

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