GSTDTAP  > 地球科学
DOI10.1038/s41586-020-2184-1
Performance-limiting nanoscale trap clusters at grain junctions in halide perovskites
van den Brink, Susanne C.; Alemany, Anna; van Batenburg, Vincent; Moris, Naomi; Blotenburg, Marloes; Vivie, Judith; Baillie-Johnson, Peter; Nichols, Jennifer; Sonnen, Katharina F.; Arias, Alfonso; van Oudenaarden, Alexander
2020-03-01
发表期刊NATURE
ISSN0028-0836
EISSN1476-4687
出版年2020
卷号580期号:7803页码:360-+
文章类型Article
语种英语
国家England; Japan; South Korea
英文关键词

Halide perovskite materials have promising performance characteristics for low-cost optoelectronic applications. Photovoltaic devices fabricated from perovskite absorbers have reached power conversion efficiencies above 25 per cent in single-junction devices and 28 per cent in tandem devices(1,2). This strong performance (albeit below the practical limits of about 30 per cent and 35 per cent, respectively(3)) is surprising in thin films processed from solution at low-temperature, a method that generally produces abundant crystalline defects(4). Although point defects often induce only shallow electronic states in the perovskite bandgap that do not affect performance(5), perovskite devices still have many states deep within the bandgap that trap charge carriers and cause them to recombine non-radiatively. These deep trap states thus induce local variations in photoluminescence and limit the device performance(6). The origin and distribution of these trap states are unknown, but they have been associated with light-induced halide segregation in mixed-halide perovskite compositions(7) and with local strain(8), both of which make devices less stable(9). Here we use photoemission electron microscopy to image the trap distribution in state-of-the-art halide perovskite films. Instead of a relatively uniform distribution within regions of poor photoluminescence efficiency, we observe discrete, nanoscale trap clusters. By correlating microscopy measurements with scanning electron analytical techniques, we find that these trap clusters appear at the interfaces between crystallographically and compositionally distinct entities. Finally, by generating time-resolved photoemission sequences of the photo-excited carrier trapping process(10,11), we reveal a hole-trapping character with the kinetics limited by diffusion of holes to the local trap clusters. Our approach shows that managing structure and composition on the nanoscale will be essential for optimal performance of halide perovskite devices.


领域地球科学 ; 气候变化 ; 资源环境
收录类别SCI-E
WOS记录号WOS:000530151300027
WOS关键词NONRADIATIVE LOSSES ; SEGREGATION ; DEFECTS ; IMPACT ; STATES
WOS类目Multidisciplinary Sciences
WOS研究方向Science & Technology - Other Topics
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/281429
专题地球科学
资源环境科学
气候变化
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GB/T 7714
van den Brink, Susanne C.,Alemany, Anna,van Batenburg, Vincent,et al. Performance-limiting nanoscale trap clusters at grain junctions in halide perovskites[J]. NATURE,2020,580(7803):360-+.
APA van den Brink, Susanne C..,Alemany, Anna.,van Batenburg, Vincent.,Moris, Naomi.,Blotenburg, Marloes.,...&van Oudenaarden, Alexander.(2020).Performance-limiting nanoscale trap clusters at grain junctions in halide perovskites.NATURE,580(7803),360-+.
MLA van den Brink, Susanne C.,et al."Performance-limiting nanoscale trap clusters at grain junctions in halide perovskites".NATURE 580.7803(2020):360-+.
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