Morphology of all-solution-processed "bilayer" organic solar cells

Lee, Kwan H., Schwenn, Paul E., Smith, Arthur R. G., Cavaye, Hamish, Shaw, Paul E., James, Michael, Krueger, Karsten B., Gentle, Ian R., Meredith, Paul and Burn, Paul L. (2011) Morphology of all-solution-processed "bilayer" organic solar cells. Advanced Materials, 23 6: 766-770. doi:10.1002/adma.201003545

Author Lee, Kwan H.
Schwenn, Paul E.
Smith, Arthur R. G.
Cavaye, Hamish
Shaw, Paul E.
James, Michael
Krueger, Karsten B.
Gentle, Ian R.
Meredith, Paul
Burn, Paul L.
Title Morphology of all-solution-processed "bilayer" organic solar cells
Journal name Advanced Materials   Check publisher's open access policy
ISSN 0935-9648
Publication date 2011-02-08
Year available 2010
Sub-type Article (original research)
DOI 10.1002/adma.201003545
Volume 23
Issue 6
Start page 766
End page 770
Total pages 5
Place of publication Weinheim, Germany
Publisher Wiley
Collection year 2012
Language eng
Abstract We investigate the evolution of the vertical morphology in a solution-processed P3HT/PCBM "bilayer" organic solar cell using a combination of techniques, including neutron reflectometry. By correlating the device performance with the active layer morphology, we establish that the solution processed bilayer concept is a misnomer and sequential solution processing is an elegant way to make bulk heterojunction organic solar cells with high efficiency.
Keyword Bilayer
Organic photovoltaics
Organic solar cells
Q-Index Code C1
Q-Index Status Confirmed Code
Institutional Status UQ
Additional Notes Article first published online: 9 DEC 2010. Published under Communications.

Document type: Journal Article
Sub-type: Article (original research)
Collections: School of Mathematics and Physics
Official 2012 Collection
School of Chemistry and Molecular Biosciences
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Citation counts: TR Web of Science Citation Count  Cited 146 times in Thomson Reuters Web of Science Article | Citations
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Created: Mon, 23 May 2011, 15:15:40 EST by Dr Kwan Lee on behalf of School of Mathematics & Physics