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用于高效稳定p-i-n太阳能电池的钝化偶极层桥接3D/2D钙钛矿异质结

Passivating Dipole Layer Bridged 3D/2D Perovskite Heterojunction for Highly Efficient and Stable p-i-n Solar Cells.

作者信息

Zang Xiaoxiao, Xiong Shaobing, Jiang Sheng, Li Di, Wu Hongbo, Ren Hao, Cao Aiping, Li Bo, Ma Zaifei, Chen Jinde, Ding Liming, Tang Jianxin, Sun Zhenrong, Chu Junhao, Bao Qinye

机构信息

School of Physics and Electronic Science, East China Normal University, Shanghai, 200241, China.

Shanghai Frontiers Science Research Base of Intelligent Optoelectronics and Perception, Institute of Optoelectronics, Fudan University, Shanghai, 200433, China.

出版信息

Adv Mater. 2024 Mar;36(13):e2309991. doi: 10.1002/adma.202309991. Epub 2023 Dec 28.

Abstract

Constructing 3D/2D perovskite heterojunction is a promising approach to integrate the benefits of high efficiency and superior stability in perovskite solar cells (PSCs). However, in contrast to n-i-p architectural PSCs, the p-i-n PSCs with 3D/2D heterojunction have serious limitations in achieving high-performance as they suffer from a large energetic mismatch and electron extraction energy barrier from a 3D perovskite layer to a 2D perovskite layer, and serious nonradiative recombination at the heterojunction. Here a strategy of incorporating a thin passivating dipole layer (PDL) onto 3D perovskite and then depositing 2D perovskite without dissolving the underlying layer to form an efficient 3D/PDL/2D heterojunction is developed. It is revealed that PDL regulates the energy level alignment with the appearance of interfacial dipole and strongly interacts with 3D perovskite through covalent bonds, which eliminate the energetic mismatch, reduce the surface defects, suppress the nonradiative recombination, and thus accelerate the charge extraction at such electron-selective contact. As a result, it is reported that the 3D/PDL/2D junction p-i-n PSCs present a power conversion efficiency of 24.85% with robust stability, which is comparable to the state-of-the-art efficiency of the 3D/2D junction n-i-p devices.

摘要

构建3D/2D钙钛矿异质结是一种将钙钛矿太阳能电池(PSC)的高效率和卓越稳定性优势相结合的有前景的方法。然而,与n-i-p结构的PSC不同,具有3D/2D异质结的p-i-n PSC在实现高性能方面存在严重限制,因为它们存在较大的能量失配以及从3D钙钛矿层到2D钙钛矿层的电子提取能垒,并且在异质结处存在严重的非辐射复合。在此,开发了一种在3D钙钛矿上引入薄钝化偶极层(PDL),然后在不溶解下层的情况下沉积2D钙钛矿以形成高效3D/PDL/2D异质结的策略。研究表明,PDL通过界面偶极的出现调节能级排列,并通过共价键与3D钙钛矿强烈相互作用,这消除了能量失配,减少了表面缺陷,抑制了非辐射复合,从而加速了这种电子选择性接触处的电荷提取。结果,据报道,3D/PDL/2D结p-i-n PSC具有24.85%的功率转换效率和稳健的稳定性,这与3D/2D结n-i-p器件的当前最高效率相当。

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