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Journal article

Solvent-resistant small molecule solar cells by roll-to-roll fabrication via introduction of azide cross-linkable group

In Synthetic Metals 2014, Volume 195, pp. 299-305
From

Zhejiang University1

Department of Energy Conversion and Storage, Technical University of Denmark2

Functional organic materials, Department of Energy Conversion and Storage, Technical University of Denmark3

Chinese Academy of Sciences4

Peking University5

A novel cross-linkable azide-functionalized diketopyrrolopyrrole based compound DPP(BT-N-3)(2) was designed and synthesized via Stille coupling. Cross-linking of such molecule could help us fabricate insoluble film which could be used to fabricate heterostructures through solution processing, without dissolving the pre-patterned layers.

In order to investigate the photovoltaic performances of the newly synthesized compound, large area solar cells were produced by roll coating technique. Two set of devices were fabricated by employing DPP(BT-N-3)(2) as either an electron donor or acceptor. A best power conversion efficiency of 0.067%, combined with an open circuit voltage of 0.53 V, and a fill factor of 37.6% were obtained for the device with DPP(BT-N-3)(2) as an electron acceptor.

In addition, we could prove that the large area small molecule based organic solar cells could be fabricated using roll coating, which could be used in the industries for large-scale of production. (C) 2014 Elsevier B.V. All rights reserved.

Language: English
Year: 2014
Pages: 299-305
ISSN: 18793290 and 03796779
Types: Journal article
DOI: 10.1016/j.synthmet.2014.06.023
ORCIDs: Bundgaard, Eva and Krebs, Frederik C

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