arrow
返回

Solar cell generations over 40% efficiency

delete2012-04-04
delete236
delete
OA
AI
R
Richard R. King *
D
D. M. Bhusari
D
D. C. Larrabee
X
X.‐Q. Liu
E
Eric Rehder
K
K. Edmondson
H
H. Cotal
R
Russell K. Jones
J
J. Ermer
C
C. M. Fetzer
D
D. C. Law
N
N.H. Karam
DOI:10.1002/pip.1255delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Multijunction III-V concentrator cells of several different types have demonstrated solar conversion efficiency over 40% since 2006, and represent the only third-generation photovoltaic technology to enter commercial power generation markets so far. The next stage of solar cell efficiency improvement, from 40% to 50%-efficient production cells, is perhaps the most important yet, since it is in this range that concentrator photovoltaic (CPV) systems can become the lowest cost option for solar electricity, competing with conventional power generation without government subsidies. The impact of 40% and 50% cell efficiency on cost-effective geographic regions for CPV systems is calculated in the continental US, Europe, and North Africa. We take a systematic look at a progression of multijunction cell architectures that will take us up to 50% efficiency, using modeling grounded in well-characterized solar cell materials systems of today's 40% cells, discussing the theoretical, materials science, and manufacturing considerations for the most promising approaches. The effects of varying solar spectrum and current balance on energy production in 4-junction, 5-junction, and 6-junction terrestrial concentrator cells are shown to be noticeable, but are far outweighed by the increased efficiency of these advanced cell designs. Production efficiency distributions of the last five generations of terrestrial concentrator solar cells are discussed. Experimental results are shown for a highly manufacturable, upright metamorphic 3-junction GaInP/GaInAs/Ge solar cell with 41.6% efficiency independently confirmed at 484?suns (48.4?W/cm2) (AM1.5D, ASTM G173-03, 25?degrees C), the highest demonstrated for a cell of this type requiring a single metal-organic vapor-phase epitaxy growth run. Copyright (c) 2012 John Wiley & Sons, Ltd.
Keyword:
multijunction
high efficiency
concentrator
III-V
metamorphic
4-junction
5-junction
6-junction
energy production
cost modeling
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

P
Progress in Photovoltaics
IF:
7.6
论文数:
2.5K
被引数:
7.8K

机构

B
boeing
学者数:
573
论文数: 470
被引数: 2
引用论文

引用论文

err
IF0
err
err0
PREAI
err
err分享
err收藏
Effect of growth rate and gallium source on GaAsN
err2003-04-21
err34
PREAI
errKurtz, S; Geisz, JF; Keyes, BM; Metzger, WK; Friedman, DJ; Olson, JM; Ptak, AJ; King, RR; Karam, NH
err分享
err收藏
Band gap-voltage offset and energy production in next-generation multijunction solar cells
err2010-11-18
err272
PREAI
errKing, R. R.; Bhusari, D.; Boca, A.; Larrabee, D.; Liu, X. -Q.; Hong, W.; Fetzer, C. M.; Law, D. C.; Karam, N. H.
err分享
err收藏
Costs and cost-effectiveness of a large-scale mass testing and treatment intervention for malaria in Southern Province, Zambia
err2015-05-20
err0
errOAAI
errKafula Silumbe; Joshua O Yukich; Busiku Hamainza; Adam Bennett; Duncan Earle; Mulakwa Kamuliwo; Richard W Steketee; Thomas P Eisele; John M Miller
err分享
err收藏
40.8% efficient inverted triple-junction solar cell with two independently metamorphic junctions
err2008-09-23
err486
PREAI
errGeisz, J. F.; Friedman, D. J.; Ward, J. S.; Duda, A.; Olavarria, W. J.; Moriarty, T. E.; Kiehl, J. T.; Romero, M. J.; Norman, A. G.; Jones, K. M.
err分享
err收藏
Modeling of Satellite-to-Underwater Integrated FSO-PON System Using NOMA-VLC
err2023-03-16
err0
errOAAI
errVivek Arya; Meet Kumari; Hamza Mohammed Ridha Al-Khafaji; Syed Alwee Aljunid
err分享
err收藏
err分享
err收藏
Adenomyosis Uteri: A Study of 416 Cases
err2008-06-28
err0
PREAI
errGangaraju C. Raju; V. Naraynsingh; J. Woo; N. Jankey
err分享
err收藏
学者 查看更多内容