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A Cross-Linked PCBM Interlayer for Efficient and UV-Stable Methylammonium-Free Perovskite Solar Cells

机译:一种交联的PCBM interlayer,用于高效和UV稳定的无甲基铵 - 无钙铵太阳能电池

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摘要

Interfacial engineering is crucial for perovskite solar cells (PSCs) to ensure efficient charge carrier transfer, and pivotal for device performances. Herein, a novel cross-linked PCBM (CL-PCBM) interlayer at the perovskite/electron transport layer (ETL) interface of the methylammonium-free PSC device is incorporated. The dimeric PCBM interlayer prepared using a facile UV cross-linking technique concurrently improves the quality of the resultant perovskite film and the charge transfer capability of the ETL, leading to significantly enhanced device photovoltaic performances. In addition, the PSC devices integrating the CL-PCBM interlayers exhibit superior humidity and UV stabilities. The successful employment of the CL-PCBM interlayer can bring new insight into the design and engineering of high-quality interfaces for efficient PSCs.
机译:界面工程对于Perovskite太阳能电池(PSC)至关重要,以确保有效的充电载流子转移和用于器件性能的关键。 这里,掺入了甲基铵/电子传输层(ETL)界面处的一种新型交联的PCBM(CL-PCBM)中间层的甲基铵的PSC装置的界面。 使用容易UV交联技术制备的二聚体PCBM中间层同时提高所得钙钛矿膜的质量和ETL的电荷传递能力,导致具有显着增强的器件光伏性能。 此外,整合CL-PCBM中间层的PSC器件表现出卓越的湿度和UV稳定性。 CL-PCBM中间层的成功就业可以为高质量PSC的高质量接口设计和工程带来新的洞察力。

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