DocumentCode
3846960
Title
Charge Separation at Molecular Donor–Acceptor Interfaces: Correlation Between Morphology and Solar Cell Performance
Author
Andreas Opitz;Julia Wagner;Wolfgang Brütting;Ingo Salzmann;Norbert Koch;Jochen Manara;Jens Pflaum;Alexander Hinderhofer;Frank Schreiber
Author_Institution
Institute of Physics at the University of Augsburg, Augsburg, Germany
Volume
16
Issue
6
fYear
2010
Firstpage
1707
Lastpage
1717
Abstract
Blends of organic electron and hole conductive materials are widely used for ambipolar charge-carrier transport and donor/acceptor (DA) photovoltaic cells. Thereby, the efficiency of these excitonic solar cells is correlated to the morphology of the interface between the donor and the acceptor materials, which in turns depends on the preparation conditions, the crystallization of the particular materials, and the interaction between the donor and acceptor molecules. In this contribution, the influence of the morphology on the solar cell architecture and performance will be discussed using different molecular DA combinations.
Keywords
"Morphology","Photovoltaic cells","Excitons","Organic materials","Physics","Crystalline materials","Absorption","Charge carrier processes","Conducting materials","Heterojunctions"
Journal_Title
IEEE Journal of Selected Topics in Quantum Electronics
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2010.2048096
Filename
5475230
Link To Document