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Boosting thin-film perovskite solar cell efficiency through vacuum-deposited sub-nanometer small-molecule electron interfacial layers
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Boosting thin-film perovskite solar cell efficiency through vacuum-deposited sub-nanometer small-molecule electron interfacial layers

Wei-Hung Lee, Chien-Yu Chen, Chia-Shuo Li, Sheng-Yi Hsiao, Wei-Lun Tsai, Min-Jie Huang, Chien-Hong Cheng, Chih-I WuHao-Wu Lin
Nano Energy, 卷.38, 頁碼.66-71
08/2017

摘要

Electron interfacial layer Perovskite solar cells Pyridine derivatives Vacuum deposition Renewable Energy Sustainability and the Environment Materials Science (all) Electrical and Electronic Engineering
In this paper, we demonstrate that the performance of perovskite solar cells can be largely boosted with sub-nm pyridine-containing small-molecule electron interfacial layers. These vacuum-deposited sub-nm layers between perovskites and electron transport layers create a permanent dipole moment that improves the interfacial energy level alignment and facilitates a fast electron sweep-out. With these interfacial layers, the devices exhibit exceptional power conversion efficiencies up to 18.8%, a 25% increase compared to that of the one without the interfacial layer.

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