Madelung and Hubbard interactions in polaron band model of doped organic semiconductors

10.1038/ncomms11948

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Main Authors: Png R.-Q., Ang M.C.Y., Teo M.-H., Choo K.-K., Tang C.G., Belaineh D., Chua L.-L., Ho P.K.H.
Other Authors: DEPT OF PHYSICS
Format: Article
Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/174936
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-1749362023-09-05T09:53:17Z Madelung and Hubbard interactions in polaron band model of doped organic semiconductors Png R.-Q. Ang M.C.Y. Teo M.-H. Choo K.-K. Tang C.G. Belaineh D. Chua L.-L. Ho P.K.H. DEPT OF PHYSICS DEPT OF CHEMISTRY anion aromatic amine copolymer fluorene organic compound triarylamine unclassified drug electrical property electronic equipment equipment component organic matter polymer standard (reference) Article calculation chemical interaction current density electron transport energy energy transfer molecular model oxidation polaron band theory quantum chemistry semiconductor surface property theory 10.1038/ncomms11948 Nature Communications 7 11948 2020-09-09T01:28:05Z 2020-09-09T01:28:05Z 2016 Article Png R.-Q., Ang M.C.Y., Teo M.-H., Choo K.-K., Tang C.G., Belaineh D., Chua L.-L., Ho P.K.H. (2016). Madelung and Hubbard interactions in polaron band model of doped organic semiconductors. Nature Communications 7 : 11948. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms11948 20411723 https://scholarbank.nus.edu.sg/handle/10635/174936 Nature Publishing Group Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic anion
aromatic amine
copolymer
fluorene
organic compound
triarylamine
unclassified drug
electrical property
electronic equipment
equipment component
organic matter
polymer
standard (reference)
Article
calculation
chemical interaction
current density
electron transport
energy
energy transfer
molecular model
oxidation
polaron band theory
quantum chemistry
semiconductor
surface property
theory
spellingShingle anion
aromatic amine
copolymer
fluorene
organic compound
triarylamine
unclassified drug
electrical property
electronic equipment
equipment component
organic matter
polymer
standard (reference)
Article
calculation
chemical interaction
current density
electron transport
energy
energy transfer
molecular model
oxidation
polaron band theory
quantum chemistry
semiconductor
surface property
theory
Png R.-Q.
Ang M.C.Y.
Teo M.-H.
Choo K.-K.
Tang C.G.
Belaineh D.
Chua L.-L.
Ho P.K.H.
Madelung and Hubbard interactions in polaron band model of doped organic semiconductors
description 10.1038/ncomms11948
author2 DEPT OF PHYSICS
author_facet DEPT OF PHYSICS
Png R.-Q.
Ang M.C.Y.
Teo M.-H.
Choo K.-K.
Tang C.G.
Belaineh D.
Chua L.-L.
Ho P.K.H.
format Article
author Png R.-Q.
Ang M.C.Y.
Teo M.-H.
Choo K.-K.
Tang C.G.
Belaineh D.
Chua L.-L.
Ho P.K.H.
author_sort Png R.-Q.
title Madelung and Hubbard interactions in polaron band model of doped organic semiconductors
title_short Madelung and Hubbard interactions in polaron band model of doped organic semiconductors
title_full Madelung and Hubbard interactions in polaron band model of doped organic semiconductors
title_fullStr Madelung and Hubbard interactions in polaron band model of doped organic semiconductors
title_full_unstemmed Madelung and Hubbard interactions in polaron band model of doped organic semiconductors
title_sort madelung and hubbard interactions in polaron band model of doped organic semiconductors
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/174936
_version_ 1778169812547010560