Issue 12, 2012

Narrowing band gap of platinum acetylide dye-sensitized solar cell sensitizers with thiophene π-bridges

Abstract

A new family of linear structure Pt(II) (triphenylamine alkynyl) 2(triethyl-phosphine) (2-carboxy-2-cyanovinyl-X-alkynyl) (where X = thiophene (PT1), [2, 2′]-bi-thiophene (PT2) or 1,2-di(2-thienyl)ethylene) (PT3)) complexes have been synthesized and characterized. The introduction of thiophene π-bridges enhanced the extent of electron delocalization over the whole molecules, so their maximum absorption peaks were red shifted. These complexes have been tested as dye-sensitized solar cell (DSSC) sensitizers. PT2 showed the best photovoltaic performance, yielding 4.21% power conversion efficiency using a volatile electrolyte. As shown in an electrochemical impedance experiment, the different charge transfer resistance (Rct) of the three sensitizers influences their injection lifetime of electrons and then their photoelectrical properties.

Graphical abstract: Narrowing band gap of platinum acetylide dye-sensitized solar cell sensitizers with thiophene π-bridges

Article information

Article type
Paper
Submitted
16 Nov 2011
Accepted
14 Dec 2011
First published
07 Feb 2012

J. Mater. Chem., 2012,22, 5382-5389

Narrowing band gap of platinum acetylide dye-sensitized solar cell sensitizers with thiophene π-bridges

W. Wu, J. Zhang, H. Yang, B. Jin, Y. Hu, J. Hua, C. Jing, Y. Long and H. Tian, J. Mater. Chem., 2012, 22, 5382 DOI: 10.1039/C2JM15928G

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