Yu Man, Wang Hao-Yi, Hao Ming-Yang, Qin Yujun, Fu Li-Min, Zhang Jian-Ping, Ai Xi-Cheng
Department of Chemistry, Renmin University of China, Beijing 100872, P. R. China.
Phys Chem Chem Phys. 2017 Aug 2;19(30):19922-19927. doi: 10.1039/c7cp02715j.
Perovskite solar cells have emerged as promising photovoltaic systems with superb power conversion efficiency. For the practical application of perovskite devices, the greatest concerns are the power output density and the related dynamics under working conditions. In this study, the working conditions of planar and mesoscopic perovskite solar cells are simulated and the power output density evolutions with the working voltage are highlighted. The planar device exhibits higher capability of outputting power than the mesoscopic one. The transient photoelectric conversion dynamics are investigated under the open circuit, short circuit and working conditions. It is found that the power output and dynamic processes are correlated intrinsically, which suggests that the power output is the competitive result of the charge carrier recombination and transport. The present work offers a unique view to elucidating the relationship between the power output and the charge carrier dynamics for perovskite solar cells in a comprehensive manner, which would be beneficial to their future practical applications.
钙钛矿太阳能电池已成为具有卓越功率转换效率的有前景的光伏系统。对于钙钛矿器件的实际应用,最大的关注点是工作条件下的功率输出密度及相关动力学。在本研究中,对平面和介观钙钛矿太阳能电池的工作条件进行了模拟,并突出了功率输出密度随工作电压的变化。平面器件比介观器件表现出更高的功率输出能力。在开路、短路和工作条件下研究了瞬态光电转换动力学。发现功率输出和动态过程本质上是相关的,这表明功率输出是电荷载流子复合和传输的竞争结果。本工作为全面阐明钙钛矿太阳能电池的功率输出与电荷载流子动力学之间的关系提供了独特视角,这将有利于其未来的实际应用。