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用于钙钛矿光伏中Förster共振能量转移驱动增强的金属有机框架的简便定制

Facile Tailoring of Metal-Organic Frameworks for Förster Resonance Energy Transfer-Driven Enhancement in Perovskite Photovoltaics.

作者信息

Liang Xiao, Xia Hai-Lun, Xiang Jin, Wang Fei, Ma Jing, Zhou Xianfang, Wang Hao, Liu Xiao-Yuan, Zhu Quanyao, Lin Haoran, Pan Jun, Yuan Mingjian, Li Gang, Hu Hanlin

机构信息

Hoffmann Institute of Advanced Materials, Shenzhen Polytechnic, 7098 Liuxian Boulevard, Shenzhen, 518055, China.

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, 430070, China.

出版信息

Adv Sci (Weinh). 2024 May;11(18):e2307476. doi: 10.1002/advs.202307476. Epub 2024 Mar 6.

Abstract

Förster resonance energy transfer (FRET) has demonstrated its potential to enhance the light energy utilization ratio of perovskite solar cells by interacting with metal-organic frameworks (MOFs) and perovskite layers. However, comprehensive investigations into how MOF design and synthesis impact FRET in perovskite systems are scarce. In this work, nanoscale HIAM-type Zr-MOF (HIAM-4023, HIAM-4024, and HIAM-4025) is meticulously tailored to evaluate FRET's existence and its influence on the perovskite photoactive layer. Through precise adjustments of amino groups and acceptor units in the organic linker, HIAM-MOFs are synthesized with the same topology, but distinct photoluminescence (PL) emission properties. Significant FRET is observed between HIAM-4023/HIAM-4024 and the perovskite, confirmed by spectral overlap, fluorescence lifetime decay, and calculated distances between HIAM-4023/HIAM-4024 and the perovskite. Conversely, the spectral overlap between the PL emission of HIAM-4025 and the perovskite's absorption spectrum is relatively minimal, impeding the energy transfer from HIAM-4025 to the perovskite. Therefore, the HIAM-4023/HIAM-4024-assisted perovskite devices exhibit enhanced EQE via FRET processes, whereas the HIAM-4025 demonstrates comparable EQE to the pristine. Ultimately, the HIAM-4023-assisted perovskite device achieves an enhanced power conversion efficiency (PCE) of 24.22% compared with pristine devices (PCE of 22.06%) and remarkable long-term stability under ambient conditions and continuous light illumination.

摘要

荧光共振能量转移(FRET)已通过与金属有机框架(MOF)和钙钛矿层相互作用,展现出提高钙钛矿太阳能电池光能利用率的潜力。然而,关于MOF设计与合成如何影响钙钛矿体系中FRET的全面研究却很匮乏。在这项工作中,对纳米级HIAM型锆基MOF(HIAM - 4023、HIAM - 4024和HIAM - 4025)进行了精心定制,以评估FRET的存在及其对钙钛矿光活性层的影响。通过精确调整有机连接体中的氨基和受体单元,合成了具有相同拓扑结构但不同光致发光(PL)发射特性的HIAM - MOF。在HIAM - 4023/HIAM - 4024与钙钛矿之间观察到显著的FRET,这通过光谱重叠、荧光寿命衰减以及计算HIAM - 4023/HIAM - 4024与钙钛矿之间的距离得到证实。相反,HIAM - 4025的PL发射与钙钛矿吸收光谱之间的光谱重叠相对较小,阻碍了能量从HIAM - 4025转移到钙钛矿。因此,HIAM - 4023/HIAM - 4024辅助的钙钛矿器件通过FRET过程表现出增强的外量子效率(EQE),而HIAM - 4025的EQE与原始器件相当。最终,与原始器件(功率转换效率(PCE)为22.06%)相比,HIAM - 4023辅助的钙钛矿器件实现了24.22%的增强PCE,并且在环境条件和持续光照下具有出色的长期稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b4b/11095144/a42b440840ee/ADVS-11-2307476-g002.jpg

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