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Diluted-CdS Quantum Dot-Assisted SnO Electron Transport Layer with Excellent Conductivity and Suitable Band Alignment for High-Performance Planar Perovskite Solar Cells. | LitMetric

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Article Abstract

An electron transport layer (ETL) with excellent conductivity and suitable band alignment plays a key role in accelerating charge extraction and transfer for achieving highly efficient planar perovskite solar cells (PSCs). Herein, a novel diluted-cadmium sulfide quantum dot (CdS QD)-assisted SnO ETL has been developed with a low-temperature fabrication process. The slight addition of CdS QDs first enhances the crystallinity and flatness of SnO ETLs so that it provides a promising workstation to obtain high-quality perovskite absorption layers. It also amazingly increases the conductivity of the SnO ETL by an order of magnitude and regulates the energy level matching between the SnO ETL and perovskite. These outstanding properties greatly accelerate the charge extraction and transfer. Thus, the MAPbI-based PSCs with such a diluted-CdSQD-assisted SnO ETL achieve a maximum power conversion efficiency of 20.78% and obtain a better stability of devices in air. These findings testify the importance and potential of semiconductor QD modification on ETLs, which may pave the way for developing such composite ETLs for further enhancing photovoltaic performance of planar PSCs.

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http://dx.doi.org/10.1021/acsami.1c00896DOI Listing

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