重组
钙钛矿(结构)
扩散
接口(物质)
材料科学
航程(航空)
电荷(物理)
工作(物理)
光电子学
计算物理学
化学物理
光伏系统
工程物理
物理
化学
电气工程
结晶学
生物化学
毛细管作用
复合材料
毛细管数
工程类
基因
热力学
量子力学
作者
Christian Ahläng,Mathias Nyman,Ronald Österbacka
标识
DOI:10.1103/physrevapplied.16.014041
摘要
The main losses in perovskite solar cells (PSCs) are often related to their charge-transport layers (CTLs). While it has been shown how losses related to charge extraction and recombination at the CTL interfaces can be minimized individually, a comprehensive picture is still lacking. In this work, we describe how recombination at interfaces is related to the distribution of electric potential within the device based on drift-diffusion simulations. Our results show that interface recombination in PSCs can only be fully understood when the whole device is considered. We find that devices with poor conductivity in the CTLs or small built-in potential will suffer from fast recombination at interfaces and that the interface recombination can be avoided by improving these. To illustrate our results, we present a framework that provides an intuitive way to understand electrical potential and compare losses in PSCs. We show that the simulation data can be well understood within the framework for the whole range of parameters studied.
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