Authors
Fei Zhang, Dong Hoe Kim, Haipeng Lu, Ji-Sang Park, Bryon W Larson, Jun Hu, Liguo Gao, Chuanxiao Xiao, Obadiah G Reid, Xihan Chen, Qian Zhao, Paul F Ndione, Joseph J Berry, Wei You, Aron Walsh, Matthew C Beard, Kai Zhu
Publication date
2019/3/18
Journal
Journal of the American Chemical Society
Volume
141
Issue
14
Pages
5972-5979
Publisher
American Chemical Society
Description
Organic–inorganic halide perovskites incorporating two-dimensional (2D) structures have shown promise for enhancing the stability of perovskite solar cells (PSCs). However, the bulky spacer cations often limit charge transport. Here, we report on a simple approach based on molecular design of the organic spacer to improve the transport properties of 2D perovskites, and we use phenethylammonium (PEA) as an example. We demonstrate that by fluorine substitution on the para position in PEA to form 4-fluorophenethylammonium (F-PEA), the average phenyl ring centroid–centroid distances in the organic layer become shorter with better aligned stacking of perovskite sheets. The impact is enhanced orbital interactions and charge transport across adjacent inorganic layers as well as increased carrier lifetime and reduced trap density. Using a simple perovskite deposition at room temperature without using any …
Total citations
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Scholar articles
F Zhang, DH Kim, H Lu, JS Park, BW Larson, J Hu… - Journal of the American Chemical Society, 2019