论文标题

通过三燃料钙钛矿钝化,有效且稳定的PBS量子点太阳能电池

Efficient and Stable PbS Quantum Dot Solar Cells by Triple-Cation Perovskite Passivation

论文作者

Albaladejo-Siguan, Miguel, Becker-Koch, David, Taylor, Alexander D., Sun, Qing, Lami, Vincent, Oppenheimer, Pola Goldberg, Paulus, Fabian, Vaynzof, Yana

论文摘要

解决方案处理的量子点(QD)具有制造低成本,柔性和大规模太阳能收集设备的高潜力。最近已经证明,与标准配体钝化相比,使用单个单价阳离子钙钛矿溶液进行PBS QD表面钝化的混合设备具有增强的光伏性能。本文我们证明,使用三阳离子CS0.05(MA0.17FA0.83)0.95pb(i0.9br0.1)3钙钛矿组成在量子点的表面钝化导致高效太阳能电池的表面钝化导致其高效的太阳能电池,这些太阳能电池可维持1200h shelf shelf shelf shelf shelf后的96%的初始性能的96%。我们通过一系列光谱技术以及高分辨率的透射电子显微镜证实PBS纳米晶体周围的钙钛矿壳形成。我们发现,三重阳离子壳会导致与点核心的有利的能量对齐,从而导致由于电荷限制而导致的重组减少,而不会限制活性层中的运输。因此,通过单步膜沉积制造的光伏设备达到了11.3%的最大AM1.5G功率转换效率,超过了大多数使用钙钛矿钝化的PBS太阳能电池的报告。

Solution-processed quantum dots (QDs) have a high potential for fabricating low cost, flexible and large-scale solar energy harvesting devices. It has recently been demonstrated that hybrid devices employing a single monovalent cation perovskite solution for PbS QD surface passivation exhibit enhanced photovoltaic performance when compared to standard ligand passivation. Herein we demonstrate that the use of a triple cation Cs0.05(MA0.17FA0.83)0.95Pb(I0.9Br0.1)3 perovskite composition for surface passivation of the quantum dots results in highly efficient solar cells, which maintain 96 % of their initial performance after 1200h shelf storage. We confirm perovskite shell formation around the PbS nanocrystals by a range of spectroscopic techniques as well as high-resolution transmission electron microscopy. We find that the triple cation shell results in a favorable energetic alignment to the core of the dot, resulting in reduced recombination due to charge confinement without limiting transport in the active layer. Consequently, photovoltaic devices fabricated via a single-step film deposition reached a maximum AM1.5G power conversion efficiency of 11.3 % surpassing most previous reports of PbS solar cells employing perovskite passivation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源