High-efficiency two-dimensional Ruddlesden-Popper perovskite solar cells

被引:2890
作者
Tsai, Hsinhan [1 ,2 ]
Nie, Wanyi [1 ]
Blancon, Jean-Christophe [1 ]
Toumpos, Constantinos C. S. [3 ,4 ,5 ]
Asadpour, Reza [6 ]
Harutyunyan, Boris [4 ,5 ]
Neukirch, Amanda J. [1 ]
Verduzco, Rafael [2 ,7 ]
Crochet, Jared J. [1 ]
Tretiak, Sergei [1 ]
Pedesseau, Laurent [8 ]
Even, Jacky [8 ]
Alam, Muhammad A. [6 ]
Gupta, Gautam [1 ]
Lou, Jun [2 ]
Ajayan, Pulickel M. [2 ]
Bedzyk, Michael J. [4 ,5 ]
Kanatzidis, Mercouri G. [3 ,4 ,5 ]
Mohite, Aditya D. [1 ]
机构
[1] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
[2] Rice Univ, Dept Mat Sci & Nanoengn, Houston, TX 77005 USA
[3] Northwestern Univ, Dept Chem, 2145 Sheridan Rd, Evanston, IL 60208 USA
[4] Northwestern Univ, Dept Mat Sci, Evanston, IL 60208 USA
[5] Northwestern Univ, Engn & Argonne Northwestern Solar Energy Res ANSE, Evanston, IL 60208 USA
[6] Purdue Univ, Sch Elect & Comp Engn, W Lafayette, IN 47907 USA
[7] Rice Univ, Dept Chem & Biomol Engn, Houston, TX 77005 USA
[8] INSA Rennes, CNRS, UMR 6082, Fonct Opt Technol Informat,FOTON, F-35708 Rennes, France
基金
美国国家科学基金会;
关键词
STABILITY; PERFORMANCE; HYSTERESIS; ABSORBER;
D O I
10.1038/nature18306
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
Three-dimensional organic-inorganic perovskites have emerged as one of the most promising thin-film solar cell materials owing to their remarkable photophysical properties(1-5), which have led to power conversion efficiencies exceeding 20 per cent(6,7), with the prospect of further improvements towards the Shockley-Queisser limit for a single-junction solar cell (33.5 per cent) (8). Besides efficiency, another critical factor for photovoltaics and other optoelectronic applications is environmental stability and photostability under operating conditions(9-15). In contrast to their three-dimensional counterparts, Ruddlesden-Popper phases-layered two-dimensional perovskite films-have shown promising stability, but poor efficiency at only 4.73 per cent(13,16,17). This relatively poor efficiency is attributed to the inhibition of out-of-plane charge transport by the organic cations, which act like insulating spacing layers between the conducting inorganic slabs. Here we overcome this issue in layered perovskites by producing thin films of near-single-crystalline quality, in which the crystallographic planes of the inorganic perovskite component have a strongly preferential out-of-plane alignment with respect to the contacts in planar solar cells to facilitate efficient charge transport. We report a photovoltaic efficiency of 12.52 per cent with no hysteresis, and the devices exhibit greatly improved stability in comparison to their three-dimensional counterparts when subjected to light, humidity and heat stress tests. Unencapsulated two-dimensional perovskite devices retain over 60 per cent of their efficiency for over 2,250 hours under constant, standard (AM1.5G) illumination, and exhibit greater tolerance to 65 per cent relative humidity than do three-dimensional equivalents. When the devices are encapsulated, the layered devices do not show any degradation under constant AM1.5G illumination or humidity. We anticipate that these results will lead to the growth of single-crystalline, solution-processed, layered, hybrid, perovskite thin films, which are essential for high-performance opto-electronic devices with technologically relevant long-term stability.
引用
收藏
页码:312 / +
页数:15
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