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通过掩埋界面法制备具有择优晶体取向的锡铅钙钛矿太阳能电池。

Tin-Lead Perovskite Solar Cells with Preferred Crystal Orientation by Buried Interface Approach.

作者信息

Xiong Jiaxing, Wang Qiuxiang, Xing Yanjun, Gan Xinlei, Zhu Wendong, Xuan Rong, Huang Like, Liu Xiaohui, Zhu Yuejin, Zhang Jing

机构信息

Department of Microelectronic Science and Engineering, Ningbo University, Ningbo, 315000, China.

College of Science and Technology, Ningbo University, Ningbo, 315300, China.

出版信息

Small. 2024 Nov;20(48):e2400934. doi: 10.1002/smll.202400934. Epub 2024 Sep 9.

Abstract

Mixed tin-lead perovskite solar cells (PSCs) have garnered much attention for their ideal bandgap and high environmental research value. However, poly (3,4-ethylenedioxythiophene): poly (styrene sulfonate) (PEDOT: PSS), widely used as a hole transport layer (HTL) for Sn-Pb PSCs, results in unsatisfactory power conversion efficiency (PCE) and long-term stability of PSCs due to its acidity and moisture absorption. A synergistic strategy by incorporating histidine (HIS) into the PEDOT: PSS HTL is applied to simultaneously regulate the nucleation and crystallization of perovskite (PVK). HIS neutralizes the acidity of PEDOT: PSS and enhances conductivity. Especially, the coordination of the C═N and -COO functional groups in the HIS molecule with Sn and Pb induces vertical growth of PVK film, resulting in the release of residual surface stress. Additionally, this strategy also optimizes the energy level alignment between the perovskite layer and the HTL, which improves charge extraction and transport. With these cooperative effects, the PCE of Sn-Pb PSCs reaches 21.46% (1 sun, AM1.5), maintaining excellent stability under a nitrogen atmosphere. Hence, the buried interface approach exhibits the potential for achieving high-performance and stable Sn-Pb PSCs.

摘要

混合锡铅钙钛矿太阳能电池(PSCs)因其理想的带隙和较高的环境研究价值而备受关注。然而,广泛用作锡铅PSCs空穴传输层(HTL)的聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS),由于其酸性和吸湿性,导致PSCs的功率转换效率(PCE)和长期稳定性不尽人意。通过将组氨酸(HIS)掺入PEDOT:PSS HTL的协同策略被应用于同时调节钙钛矿(PVK)的成核和结晶。HIS中和了PEDOT:PSS的酸性并提高了导电性。特别是,HIS分子中的C═N和-COO官能团与Sn和Pb的配位诱导了PVK薄膜的垂直生长,从而释放了残余的表面应力。此外,该策略还优化了钙钛矿层与HTL之间的能级排列,改善了电荷提取和传输。通过这些协同效应,锡铅PSCs的PCE达到21.46%(1个太阳,AM1.5),在氮气气氛下保持了优异的稳定性。因此,掩埋界面方法展现出实现高性能和稳定的锡铅PSCs的潜力。

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