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Matrix Organization and Merit Factor Evaluation as a Method to Address the Challenge of Finding a Polymer Material for Roll Coated Polymer Solar Cells

Bundgaard, E. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Livi, F. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Hagemann, O. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
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Carle, J. E. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Helgesen, M. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Heckler, I. M. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Zawacka, N. K. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Angmo, D. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Larsen-Olsen, T. T. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Benatto, G. A. D. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Roth, B. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Madsen, M. V. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Andersson, Mats, 1966 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Jorgensen, M. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Sondergaard, R. R. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
Krebs, F. C. (author)
Danmarks Tekniske Universitet,Technical University of Denmark
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 (creator_code:org_t)
2015-02-19
2015
English.
In: Advanced Energy Materials. - : Wiley. - 1614-6840 .- 1614-6832. ; 5:10, s. Art. no. 1402186-
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The results presented demonstrate how the screening of 104 light-absorbing low band gap polymers for suitability in roll coated polymer solar cells can be accomplished through rational synthesis according to a matrix where 8 donor and 13 acceptor units are organized in rows and columns. Synthesis of all the polymers corresponding to all combinations of donor and acceptor units is followed by characterization of all the materials with respect to molecular weight, electrochemical energy levels, band gaps, photochemical stability, carrier mobility, and photovoltaic parameters. The photovoltaic evaluation is carried out with specific reference to scalable manufacture, which includes large area (1 cm(2)), stable inverted device architecture, an indium-tin-oxide-free fully printed flexible front electrode with ZnO/PEDOT:PSS (poly(3,4-ethylenedioxythiophene):polystyrene sulfonate), and a printed silver comb back electrode structure. The matrix organization enables fast identification of active layer materials according to a weighted merit factor that includes more than simply the power conversion efficiency and is used as a method to identify the lead candidates. Based on several characteristics included in the merit factor, it is found that 13 out of the 104 synthesized polymers outperformed poly(3-hexylthiophene) under the chosen processing conditions and thus can be suitable for further development.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Materialteknik -- Textil-, gummi- och polymermaterial (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Materials Engineering -- Textile, Rubber and Polymeric Materials (hsv//eng)

Keyword

polymer solar cells
polymer materials
roll coating
synthesis
materials screening

Publication and Content Type

art (subject category)
ref (subject category)

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