Issue 30, 2009

Three-dimensional nanoscale organization of polymer solar cells

Abstract

The performance of polymer solar cells (PSCs) strongly depends on the three-dimensional morphological organization of the compounds within the bulk heterojunction active layer. Donor and acceptor materials should form co-continuous networks with nanoscale phase separation to sustain effective dissociation of excitons into free electrons and holes at the donor/acceptor interface and to guarantee fast charge carrier transport from any place in the photoactive layer to the corresponding electrodes. Here, we describe applications of the technique of electron tomography to directly visualize with nanometre resolution and study in detail the 3D organization in the photoactive layers of PSCs, with the aim of identifying the critical morphology parameters contributing to high efficiency of bulk heterojunction systems.

Graphical abstract: Three-dimensional nanoscale organization of polymer solar cells

  • This article is part of the themed collection: Solar cells

Article information

Article type
Paper
Submitted
15 Jan 2009
Accepted
27 Mar 2009
First published
07 May 2009

J. Mater. Chem., 2009,19, 5388-5393

Three-dimensional nanoscale organization of polymer solar cells

S. van Bavel, E. Sourty, G. de With, S. Veenstra and J. Loos, J. Mater. Chem., 2009, 19, 5388 DOI: 10.1039/B900901A

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