钙钛矿(结构)
卤化物
光伏系统
铅(地质)
材料科学
能量转换效率
带隙
碘化物
开路电压
碘化铵
纳米技术
化学工程
光电子学
无机化学
化学
电压
电气工程
工程类
地质学
地貌学
作者
Ravinder Kour,Sandeep Arya,Sonali Verma,Jyoti Gupta,Pankaj Bandhoria,Vishal Bharti,Ram Datt,Vinay Gupta
标识
DOI:10.1002/gch2.201900050
摘要
Abstract Lead halide perovskites have displayed the highest solar power conversion efficiencies of 23% but the toxicity issues of these materials need to be addressed. Lead‐free perovskites have emerged as viable candidates for potential use as light harvesters to ensure clean and green photovoltaic technology. The substitution of lead by Sn, Ge, Bi, Sb, Cu and other potential candidates have reported efficiencies of up to 9%, but there is still a dire need to enhance their efficiencies and stability within the air. A comprehensive review is given on potential substitutes for lead‐free perovskites and their characteristic features like energy bandgaps and optical absorption as well as photovoltaic parameters like open‐circuit voltage ( V OC ), fill factor, short‐circuit current density ( J SC ), and the device architecture for their efficient use. Lead‐free perovskites do possess a suitable bandgap but have low efficiency. The use of additives has a significant effect on their efficiency and stability. The incorporation of cations like diethylammonium, phenylethyl ammonium, phenylethyl ammonium iodide, etc., or mixed cations at different compositions at the A‐site is reported with engineered bandgaps having significant efficiency and stability. Recent work on the advancement of lead‐free perovskites is also reviewed.
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