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通过优化界面层迈向高效的基于铯钛卤化物的无铅双钙钛矿太阳能电池

Towards Highly Efficient Cesium Titanium Halide Based Lead-Free Double Perovskites Solar Cell by Optimizing the Interface Layers.

作者信息

Moiz Syed Abdul, Albadwani Saud Abdulaziz, Alshaikh Mohammed Saleh

机构信息

Device Simulation Laboratory, Department of Electrical Engineering, College of Engineering and Islamic Architecture, Umm Al-Qura University, Makkah 21955, Saudi Arabia.

出版信息

Nanomaterials (Basel). 2022 Sep 30;12(19):3435. doi: 10.3390/nano12193435.

Abstract

Lead halide perovskites are the most promising compared to the other recently discovered photovoltaic materials, but despite their enormous potential, these materials are facing some serious concerns regarding lead-based toxicity. Among many lead-free perovskites, the vacancy-ordered double perovskite cesium titanium halide family (, = , , ) is very popular and heavily investigated and reported on. The main objective of this study is to design and compare an efficient cesium titanium halide-based solar cell that can be used as an alternative to lead-based perovskite solar cells. For efficient photovoltaic requirements, the hole-transport layer and electron-transport layer materials such as PEDOT:PSS and NbO are selected, as these are the commonly reported materials and electronically compatible with the cesium titanium halide family. For the active layer, cesium titanium halide family members such as , , and are reported here for the devices , , and , respectively. To determine the most efficient photovoltaic response, all the layers (, , and active perovskite layer) of each device are optimized concerning thickness as well as doping density, and then each optimized device was systematically investigated for its photovoltaic responses through simulation and modeling. It is observed that the device shows the most efficient photovoltaic response with little above 18.5% for maximum power-conversion efficiency.

摘要

与其他最近发现的光伏材料相比,卤化铅钙钛矿是最有前途的,但尽管它们具有巨大潜力,这些材料仍面临一些关于铅基毒性的严重问题。在众多无铅钙钛矿中,空位有序双钙钛矿卤化铯钛家族(, = , , )非常受欢迎,并且受到了大量研究和报道。本研究的主要目的是设计并比较一种高效的卤化铯钛基太阳能电池,它可作为铅基钙钛矿太阳能电池的替代品。出于高效光伏需求,选择了诸如PEDOT:PSS和NbO等空穴传输层和电子传输层材料,因为这些是常见报道的材料且与卤化铯钛家族在电子方面兼容。对于有源层,分别在此报道了用于器件 、 和 的卤化铯钛家族成员 、 和 。为了确定最有效的光伏响应,对每个器件的所有层( 、 和有源钙钛矿层)的厚度以及掺杂密度进行了优化,然后通过模拟和建模系统地研究了每个优化器件的光伏响应。观察到器件 显示出最有效的光伏响应,最大功率转换效率略高于18.5%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77da/9565611/ecadd8bcbe9f/nanomaterials-12-03435-g001.jpg

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