A polymer tandem solar cell with 10.6% power conversion efficiency

被引:2606
作者
You, Jingbi [1 ]
Dou, Letian [1 ]
Yoshimura, Ken [2 ]
Kato, Takehito [2 ]
Ohya, Kenichiro [2 ]
Moriarty, Tom [3 ]
Emery, Keith [3 ]
Chen, Chun-Chao [1 ]
Gao, Jing [1 ]
Li, Gang [1 ]
Yang, Yang [1 ,4 ]
机构
[1] Univ Calif Los Angeles, Dept Mat Sci & Engn, Los Angeles, CA 90095 USA
[2] Sumitomo Chem Co Ltd, Tsukuba Mat Dev Lab, Tsukuba, Ibaraki 3003294, Japan
[3] Natl Renewable Energy Lab, Golden, CO 80401 USA
[4] Univ Calif Los Angeles, Calif NanoSyst Inst, Los Angeles, CA 90095 USA
关键词
OPEN-CIRCUIT VOLTAGE; HIGH-PERFORMANCE; OXIDE NANOPARTICLES; CONJUGATED POLYMERS; TRANSPORT; ACCEPTOR; LAYER; UNITS;
D O I
10.1038/ncomms2411
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
An effective way to improve polymer solar cell efficiency is to use a tandem structure, as a broader part of the spectrum of solar radiation is used and the thermalization loss of photon energy is minimized. In the past, the lack of high-performance low-bandgap polymers was the major limiting factor for achieving high-performance tandem solar cell. Here we report the development of a high-performance low bandgap polymer (bandgap <1.4 eV), poly[2,7-(5,5-bis-(3,7-dimethyloctyl)-5H-dithieno[3,2-b:2',3'-d]pyran)-alt-4,7-(5,6-difluoro-2,1,3-benzothia diazole)] with a bandgap of 1.38 eV, high mobility, deep highest occupied molecular orbital. As a result, a single-junction device shows high external quantum efficiency of >60% and spectral response that extends to 900 nm, with a power conversion efficiency of 7.9%. The polymer enables a solution processed tandem solar cell with certified 10.6% power conversion efficiency under standard reporting conditions (25 degrees C, 1,000 Wm(-2), IEC 60904-3 global), which is the first certified polymer solar cell efficiency over 10%.
引用
收藏
页数:10
相关论文
共 55 条
[1]   Organic tandem solar cells: A review [J].
Ameri, Tayebeh ;
Dennler, Gilles ;
Lungenschmied, Christoph ;
Brabec, Christoph J. .
ENERGY & ENVIRONMENTAL SCIENCE, 2009, 2 (04) :347-363
[2]   Efficient hybrid solar cells from zinc oxide nanoparticles and a conjugated polymer [J].
Beek, WJE ;
Wienk, MM ;
Janssen, RAJ .
ADVANCED MATERIALS, 2004, 16 (12) :1009-+
[3]   Poly(diketopyrrolopyrrole-terthiophene) for Ambipolar Logic and Photovoltaics [J].
Bijleveld, Johan C. ;
Zoombelt, Arjan P. ;
Mathijssen, Simon G. J. ;
Wienk, Martijn M. ;
Turbiez, Mathieu ;
de Leeuw, Dago M. ;
Janssen, Rene A. J. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (46) :16616-+
[4]   Design of organic tandem solar cells using low- and high-bandgap polymer:fullerene composites [J].
Boland, Patrick ;
Lee, Keejoo ;
Dean, James ;
Namkoong, Gon .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2010, 94 (12) :2170-2175
[5]   SPECTRAL RESPONSE AND IV MEASUREMENTS OF TANDEM AMORPHOUS-SILICON ALLOY SOLAR-CELLS [J].
BURDICK, J ;
GLATFELTER, T .
SOLAR CELLS, 1986, 18 (3-4) :301-314
[6]   Polymer solar cells with enhanced open-circuit voltage and efficiency [J].
Chen, Hsiang-Yu ;
Hou, Jianhui ;
Zhang, Shaoqing ;
Liang, Yongye ;
Yang, Guanwen ;
Yang, Yang ;
Yu, Luping ;
Wu, Yue ;
Li, Gang .
NATURE PHOTONICS, 2009, 3 (11) :649-653
[7]   A Metal-Oxide Interconnection Layer for Polymer Tandem Solar Cells with an Inverted Architecture [J].
Chou, Cheng-Hsuan ;
Kwan, Wei Lek ;
Hong, Ziruo ;
Chen, Li-Min ;
Yang, Yang .
ADVANCED MATERIALS, 2011, 23 (10) :1282-+
[8]  
Coffin RC, 2009, NAT CHEM, V1, P657, DOI [10.1038/NCHEM.403, 10.1038/nchem.403]
[9]   Miscibility, Crystallinity, and Phase Development in P3HT/PCBM Solar Cells: Toward an Enlightened Understanding of Device Morphology and Stability [J].
Collins, Brian A. ;
Tumbleston, John R. ;
Ade, Harald .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2011, 2 (24) :3135-3145
[10]   Thiophene and selenophene copolymers incorporating fluorinated phenylene units in the main chain: Synthesis, characterization, and application in organic field-effect transistors [J].
Crouch, DJ ;
Skabara, PJ ;
Lohr, JE ;
McDouall, JJW ;
Heeney, M ;
McCulloch, I ;
Sparrowe, D ;
Shkunov, M ;
Coles, SJ ;
Horton, PN ;
Hursthouse, MB .
CHEMISTRY OF MATERIALS, 2005, 17 (26) :6567-6578