A Review: Thermal Stability of Methylammonium Lead Halide Based Perovskite Solar Cells

被引:205
作者
Ava, Tanzila Tasnim [1 ]
Al Mamun, Abdullah [1 ]
Marsillac, Sylvain [1 ]
Namkoong, Gon [1 ]
机构
[1] Old Dominion Univ, Dept Elect & Comp Engn, Appl Res Ctr, 12050 Jefferson Ave, Newport News, VA 23606 USA
来源
APPLIED SCIENCES-BASEL | 2019年 / 9卷 / 01期
基金
美国国家科学基金会;
关键词
photovoltaic; perovskite solar cells; thermal decomposition; thermal stability; LONG-TERM STABILITY; HIGH-PERFORMANCE; CH3NH3PBI3; PEROVSKITE; INDUCED DEGRADATION; SELECTIVE CONTACTS; THIN-FILM; EFFICIENT; LIGHT; LAYER; FORMAMIDINIUM;
D O I
10.3390/app9010188
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Perovskite solar cells have achieved photo-conversion efficiencies greater than 20%, making them a promising candidate as an emerging solar cell technology. While perovskite solar cells are expected to eventually compete with existing silicon-based solar cells on the market, their long-term stability has become a major bottleneck. In particular, perovskite films are found to be very sensitive to external factors such as air, UV light, light soaking, thermal stress and others. Among these stressors, light, oxygen and moisture-induced degradation can be slowed by integrating barrier or interface layers within the device architecture. However, the most representative perovskite absorber material, CH3NH3PbI3 (MAPbI(3)), appears to be thermally unstable even in an inert environment. This poses a substantial challenge for solar cell applications because device temperatures can be over 45 degrees C higher than ambient temperatures when operating under direct sunlight. Herein, recent advances in resolving thermal stability problems are highlighted through literature review. Moreover, the most recent and promising strategies for overcoming thermal degradation are also summarized.
引用
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页数:25
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