Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells

Though single-material organic solar cells are attractive for next-generation photovoltaic technologies, designing new materials with ideal properties remains a challenge. Here, the authors report the use of orientation-dependent molecular electrostatics to realise efficient homojunction devices.

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Autores principales: Yifan Dong, Vasileios C. Nikolis, Felix Talnack, Yi-Chun Chin, Johannes Benduhn, Giacomo Londi, Jonas Kublitski, Xijia Zheng, Stefan C. B. Mannsfeld, Donato Spoltore, Luca Muccioli, Jing Li, Xavier Blase, David Beljonne, Ji-Seon Kim, Artem A. Bakulin, Gabriele D’Avino, James R. Durrant, Koen Vandewal
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/7f76467a244b469089e64d5cdcdd04a0
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spelling oai:doaj.org-article:7f76467a244b469089e64d5cdcdd04a02021-12-02T18:33:51ZOrientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells10.1038/s41467-020-18439-z2041-1723https://doaj.org/article/7f76467a244b469089e64d5cdcdd04a02020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18439-zhttps://doaj.org/toc/2041-1723Though single-material organic solar cells are attractive for next-generation photovoltaic technologies, designing new materials with ideal properties remains a challenge. Here, the authors report the use of orientation-dependent molecular electrostatics to realise efficient homojunction devices.Yifan DongVasileios C. NikolisFelix TalnackYi-Chun ChinJohannes BenduhnGiacomo LondiJonas KublitskiXijia ZhengStefan C. B. MannsfeldDonato SpoltoreLuca MuccioliJing LiXavier BlaseDavid BeljonneJi-Seon KimArtem A. BakulinGabriele D’AvinoJames R. DurrantKoen VandewalNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yifan Dong
Vasileios C. Nikolis
Felix Talnack
Yi-Chun Chin
Johannes Benduhn
Giacomo Londi
Jonas Kublitski
Xijia Zheng
Stefan C. B. Mannsfeld
Donato Spoltore
Luca Muccioli
Jing Li
Xavier Blase
David Beljonne
Ji-Seon Kim
Artem A. Bakulin
Gabriele D’Avino
James R. Durrant
Koen Vandewal
Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells
description Though single-material organic solar cells are attractive for next-generation photovoltaic technologies, designing new materials with ideal properties remains a challenge. Here, the authors report the use of orientation-dependent molecular electrostatics to realise efficient homojunction devices.
format article
author Yifan Dong
Vasileios C. Nikolis
Felix Talnack
Yi-Chun Chin
Johannes Benduhn
Giacomo Londi
Jonas Kublitski
Xijia Zheng
Stefan C. B. Mannsfeld
Donato Spoltore
Luca Muccioli
Jing Li
Xavier Blase
David Beljonne
Ji-Seon Kim
Artem A. Bakulin
Gabriele D’Avino
James R. Durrant
Koen Vandewal
author_facet Yifan Dong
Vasileios C. Nikolis
Felix Talnack
Yi-Chun Chin
Johannes Benduhn
Giacomo Londi
Jonas Kublitski
Xijia Zheng
Stefan C. B. Mannsfeld
Donato Spoltore
Luca Muccioli
Jing Li
Xavier Blase
David Beljonne
Ji-Seon Kim
Artem A. Bakulin
Gabriele D’Avino
James R. Durrant
Koen Vandewal
author_sort Yifan Dong
title Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells
title_short Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells
title_full Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells
title_fullStr Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells
title_full_unstemmed Orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells
title_sort orientation dependent molecular electrostatics drives efficient charge generation in homojunction organic solar cells
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/7f76467a244b469089e64d5cdcdd04a0
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