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添加剂对高激发态MAPbI钙钛矿层扩散增强作用的研究

Diffusion Enhancement in Highly Excited MAPbI Perovskite Layers with Additives.

作者信息

Ščajev Patrik, Qin Chuanjiang, Aleksieju Nas Ramu Nas, Baronas Paulius, Miasojedovas Saulius, Fujihara Takashi, Matsushima Toshinori, Adachi Chihaya, Juršėnas Saulius

机构信息

Institute of Photonics and Nanotechnology , Vilnius University , Sauletekio Ave. 3 , LT 10257 Vilnius , Lithuania.

Center for Organic Photonics and Electronics Research (OPERA) , Kyushu University , 744, Motooka , Nishi , Fukuoka 819-0395 , Japan.

出版信息

J Phys Chem Lett. 2018 Jun 21;9(12):3167-3172. doi: 10.1021/acs.jpclett.8b01155. Epub 2018 May 31.

Abstract

Carrier mobility is one of the crucial parameters determining the electronic device performance. We apply the light-induced transient grating technique to measure independently the carrier diffusion coefficient and lifetime, and to reveal the impact of additives on carrier transport properties in wet-cast CHNHPbI (MAPbI) perovskite films. We use the high excitation regime, where diffusion length of carriers is controlled purely by carrier diffusion and not by the lifetime. We demonstrate a four-fold increase in diffusion coefficient due to the reduction of localization center density by additives; however, the density dependence analysis shows the dominance of localization-limited diffusion regime. The presented approach allows us to estimate the limits of technological improvement-carrier diffusion coefficient in wet-cast layers can be expected to be enhanced by up to one order of magnitude.

摘要

载流子迁移率是决定电子器件性能的关键参数之一。我们应用光致瞬态光栅技术独立测量载流子扩散系数和寿命,并揭示添加剂对湿铸CHNHPbI(MAPbI)钙钛矿薄膜中载流子传输特性的影响。我们使用高激发态,在该状态下,载流子的扩散长度仅由载流子扩散控制,而不由寿命控制。我们证明,由于添加剂降低了局域中心密度,扩散系数提高了四倍;然而,密度依赖性分析表明,局域限制扩散机制占主导地位。所提出的方法使我们能够估计技术改进的极限——湿铸层中的载流子扩散系数有望提高一个数量级。

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