Controlling Blend Morphology for Ultra-High Current Density in Non-Fullerene Acceptor Based Organic Solar Cells. Song, x., Gasparini, N., Ye, L., Yao, H., Hou, J., Ade, H., & Baran, D. ACS Energy Letters, American Chemical Society (ACS), January, 2018. Paper doi bibtex @article{Song_2018,
added-at = {2018-01-24T11:08:27.000+0100},
author = {xin Song and Gasparini, Nicola and Ye, Long and Yao, Huifeng and Hou, Jianhui and Ade, Harald and Baran, Derya},
biburl = {https://www.bibsonomy.org/bibtex/29d01027b108ee1f329750a21a2166197/deibel},
description = {Controlling Blend Morphology for Ultra-High Current Density in Non-Fullerene Acceptor Based Organic Solar Cells - ACS Energy Letters (ACS Publications)},
doi = {10.1021/acsenergylett.7b01266},
interhash = {d4a9c0de5ce43bba73361ee84221013b},
intrahash = {9d01027b108ee1f329750a21a2166197},
journal = {ACS Energy Letters},
keywords = {non-fullerene morphology solar-cell semiconductors organic},
month = jan,
publisher = {American Chemical Society ({ACS})},
timestamp = {2018-01-24T11:08:27.000+0100},
title = {Controlling Blend Morphology for Ultra-High Current Density in Non-Fullerene Acceptor Based Organic Solar Cells},
url = {https://doi.org/10.1021%2Facsenergylett.7b01266},
year = 2018
}
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