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通过具有(BA)AgBiBr纳米片的垂直异质结构实现高效稳定的3D/2D钙钛矿太阳能电池。

Efficient and Stable 3D/2D Perovskite Solar Cells through Vertical Heterostructures with (BA) AgBiBr Nanosheets.

作者信息

Zhao Dan, Gao Danpeng, Wu Xin, Li Bo, Zhang Shoufeng, Li Zhen, Wang Qi, Wu Zongxiao, Zhang Chunlei, Choy Wallace C H, Zhong Xiaoyan, He Qiyuan, Zhu Zonglong

机构信息

Department of Chemistry, City University of Hong Kong, Kowloon, 999077, Hong Kong.

Department of Electronic Engineering, Guangxi University of Science and Technology, Liuzhou, 545006, P. R. China.

出版信息

Adv Mater. 2022 Sep;34(39):e2204661. doi: 10.1002/adma.202204661. Epub 2022 Aug 26.

Abstract

Perovskite solar cells (PVSCs) have drawn great attention due to their high processability and superior photovoltaic properties. However, their further development is often hindered by severe nonradiative recombination at interfaces that decreases power conversion efficiency (PCE). To this end, a facile strategy to construct a 3D/2D vertical heterostructure to reduce the energy loss in PVSCs is developed. The heterostructure is contrived through the van der Waals integration of 2D perovskite ((BA) AgBiBr ) nanosheets onto the surface of 3D-FAPbI -based perovskites. The large bandgap of (BA) AgBiBr enables the formation of type-I heterojunction with 3D-FAPbI -based perovskites, which serves as a barrier to suppress the trap-assisted recombination at the interface. As a result, a satisfying PCE of 24.48% is achieved with an improved open-circuit voltage (V ) from 1.13 to 1.17 V. Moreover, the 2D perovskite nanosheets can effectively mitigate the iodide ion diffusion from perovskite to the metal electrode, hence enhancing the device stability. 3D/2D architectured devices retain ≈90% of their initial PCE under continuous illumination or heating after 1000 h, which are superior to 3D-based devices. This work provides an effective and controllable strategy to construct 3D/2D vertical heterostructure to simultaneously boost the efficiency and stability of PVSCs.

摘要

钙钛矿太阳能电池(PVSCs)因其高可加工性和优异的光伏性能而备受关注。然而,其进一步发展常常受到界面处严重的非辐射复合的阻碍,这会降低功率转换效率(PCE)。为此,开发了一种构建3D/2D垂直异质结构以减少PVSCs中能量损失的简便策略。这种异质结构是通过将二维钙钛矿((BA)AgBiBr )纳米片范德华集成到基于3D - FAPbI 的钙钛矿表面而设计的。(BA)AgBiBr 的大带隙使得能够与基于3D - FAPbI 的钙钛矿形成I型异质结,该异质结可作为抑制界面处陷阱辅助复合的势垒。结果,实现了令人满意的24.48%的PCE,开路电压(V )从1.13 V提高到1.17 V。此外,二维钙钛矿纳米片可以有效减轻碘离子从钙钛矿向金属电极的扩散,从而提高器件稳定性。在连续光照或加热1000小时后,3D/2D结构的器件保留了其初始PCE的约90%,优于基于3D的器件。这项工作提供了一种有效且可控的策略来构建3D/2D垂直异质结构,以同时提高PVSCs的效率和稳定性。

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