Coherent light trapping in thin-film photovoltaics

被引:0
作者
Shrestha Basu Mallick
Nicholas P. Sergeant
Mukul Agrawal
Jung-Yong Lee
Peter Peumans
机构
[1] Stanford University,
[2] Applied Materials,undefined
[3] Korea Advanced Institute of Science and Technology,undefined
来源
MRS Bulletin | 2011年 / 36卷
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摘要
Thin-film photovoltaic technologies have an enormous potential to reduce the cost of solar electricity. However, because thin photoactive layers are used, optical absorption is incomplete unless light-trapping strategies are employed. Since conventional light-trapping approaches based on geometric scattering are less effective in thin-film cells, coherent light-trapping approaches that exploit the wave nature of light are being explored to enhance optical absorption. In this article, we look at the various strategies for coherent light trapping in thin-film solar cells, including photonic crystals, metal nanostructures, and multilayer stacks. The suitability of a particular strategy depends on factors such as configuration of the solar cell, process compatibility, cost, desired angular response, and materials usage. We also discuss the physical limits of light trapping in thin films.
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页码:453 / 460
页数:7
相关论文
共 500 条
[1]  
Shockley W(1961)undefined J. Appl. Phys. 32 510-undefined
[2]  
Queisser HJ(1982)undefined J. Opt. Soc. Am. 72 899-undefined
[3]  
Yablonovitch E(1984)undefined IEEE Trans. Electron Devices 31 711-undefined
[4]  
Tiedje T(1982)undefined IEEE Trans. Electron Devices 29 300-undefined
[5]  
Yablonovitch E(1991)undefined IEEE Trans. Electron. Devices 38 1925-undefined
[6]  
Cody GD(1999)undefined IEEE Trans. Electron. Devices 46 2035-undefined
[7]  
Brooks BG(1987)undefined J. Appl. Phys. 62 243-undefined
[8]  
Yablonovitch E(2004)undefined Sol. Energy 77 917-undefined
[9]  
Cody G(2008)undefined J. Appl. Phys. 104 034502-undefined
[10]  
Green MA(2009)undefined Opt. Express 17 20975-undefined