The rising star in photovoltaics-perovskite solar cells: The past, present and future

被引:0
作者
Rui Fang
WenJun Zhang
ShaSha Zhang
Wei Chen
机构
[1] Huazhong University of Science and Technology,Michael Grätzel Centre for Mesoscopic Solar Cells, Wuhan National Laboratory for Optoelectronics
来源
Science China Technological Sciences | 2016年 / 59卷
关键词
organometal halides; perovskite solar cells; cell configurations; efficiency records; stability; industrialization prospects;
D O I
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中图分类号
学科分类号
摘要
Perovskite solar cell (PVSC), after its invention since 2009, has attracted tremendous attention from both academia and industry, because of its low cost, ease of manufacturing features and the sky-rocketing efficiencies being achieved within such a short period of time. Currently, the new efficiency record has reached 21.0%, comparable to that of the commercialized PV technologies developed for decades, such as multi-crystalline Si, CIGS and CdTe thin film solar cells. It is very possible that PVSCs would one day step over the threshold of marketization, share or even overturn the current PV market dominated by crystalline-Si solar cells. However, there are still several obstacles to be overcome on the road towards PVSC industrialization. This paper has reviewed the brief developing history and the current research status of PVSCs, and explained: Why PVSCs are so important in the next-generation solar cells, why organometal halide perovskites work so well as light absorbers, and what the inherent differences are among different cell configurations. The prospects on how to realize scale-up industrialization of PVSCs have also been given in the sequence of efficiency, stability, cost, toxicity, and short-term objectives. Resolutions to the remaining challenges according to their orders of technical difficulty and importance have also been discussed.
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页码:989 / 1006
页数:17
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共 447 条
[1]  
Gribov B G(2003)Preparation of high-purity silicon for solar cells. Inorg Mater 39 653-662
[2]  
Zinov’ev K V(2015)Metal production requirements for rapid photovoltaics deployment. Energy Environ Sci 8 1651-1659
[3]  
Kavlak G(1982)Solar grade silicon as a potential candidate material for low-cost terrestrial solar cells. Sol Energy Mater 6 253-297
[4]  
McNerney J(2012)Future recycling flows of tellurium from cadmium telluride photovoltaic waste. Resour Conserv Recycl 69 35-49
[5]  
Jaffe R L(2015)Evaluating the availability of gallium, indium, and tellurium from recycled photovoltaic modules. Sol Energy Mater Sol Cells 138 58-71
[6]  
Sergio P(2007)Toward GW/year of CIGS production within the next decade. Sol Energy Mater Sol Cells 91 1376-1382
[7]  
Max M(2014)Solar cell efficiency tables (Version 43). Prog Photovoltaics 22 1-9
[8]  
Armin R(2014)Solar cell efficiency tables (Version 44). Prog Photovoltaics 22 701-710
[9]  
Michael R(2015)Solar cell efficiency tables (Version 45). Prog Photovoltaics 23 1-9
[10]  
Roderick E(2016)Solar cell efficiency tables (Version 47). Prog Photovoltaics 24 3-11