Bati Abdulaziz S R, Hao Mengmeng, Macdonald Thomas J, Batmunkh Munkhbayar, Yamauchi Yusuke, Wang Lianzhou, Shapter Joseph G
Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, Brisbane, Queensland, 4072, Australia.
Centre for Organic Photonics & Electronics, School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Brisbane, Queensland, 4072, Australia.
Small. 2021 Aug;17(32):e2101925. doi: 10.1002/smll.202101925. Epub 2021 Jul 2.
Incorporation of 2D MXenes into the electron transporting layer (ETL) of perovskite solar cells (PSCs) has been shown to deliver high-efficiency photovoltaic (PV) devices. However, the ambient fabrication of the ETLs leads to unavoidable deterioration in the electrical properties of MXene due to oxidation. Herein, sorted metallic single-walled carbon nanotubes (m-SWCNTs) are employed to prepare MXene/SWCNTs composites to improve the PV performance of PSCs. With the optimized composition, a power conversion efficiency of over 21% is achieved. The improved photoluminescence and reduced charge transfer resistance revealed by electrochemical impedance spectroscopy demonstrated low trap density and improved charge extraction and transport characteristics due to the improved conductivity originating from the presence of nanotubes as well as the reduced defects associated with oxygen vacancies on the surface of the SnO . The MXene/SWCNTs strategy reported here provides a new avenue for realizing high-performance PSCs.
将二维MXenes纳入钙钛矿太阳能电池(PSC)的电子传输层(ETL)已被证明可实现高效光伏(PV)器件。然而,ETL的环境制备会因氧化导致MXene的电学性能不可避免地恶化。在此,采用分类的金属单壁碳纳米管(m-SWCNTs)制备MXene/SWCNTs复合材料,以提高PSC的光伏性能。通过优化组成,实现了超过21%的功率转换效率。电化学阻抗谱显示的光致发光改善和电荷转移电阻降低表明,由于纳米管的存在提高了导电性以及与SnO表面氧空位相关的缺陷减少,陷阱密度降低,电荷提取和传输特性得到改善。本文报道的MXene/SWCNTs策略为实现高性能PSC提供了一条新途径。