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Theoretical study of quinolines–I2 intermolecular interaction and implications on dye-sensitized solar cell performance

✍ Scribed by Hitoshi Kusama; Hideki Sugihara


Book ID
102305582
Publisher
John Wiley and Sons
Year
2005
Tongue
English
Weight
239 KB
Volume
26
Category
Article
ISSN
0192-8651

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✦ Synopsis


Abstract

The monomer and intermolecular charge‐transfer complexes of 13 different quinoline derivatives with diiodine were studied using ab initio molecular orbital (MO) and density functional theory (DFT) methods. Calculations revealed that the σ* orbital of iodine interacts with the nitrogen lone pair in the quinoline ring. The open‐circuit photovoltage (V~oc~) values of an Ru(II) complex dye‐sensitized nanocrystalline TiO~2~ solar cell with an I^−^/I redox electrolyte in acetonitrile using quinoline additives were compared to the computational calculations on the intermolecular interaction between quinolines and I~2~. The optimized geometries, frequency analyses, Mulliken population analyses, natural bond orbital (NBO) analyses, and interaction energies indicate that the V~oc~ value of the solar cell is higher when quinoline complexes more favorably interact with I~2~. Therefore, the interaction between the quinoline additives and iodine redox electrolyte is an important factor for controlling dye‐sensitized solar cell performance. © 2005 Wiley Periodicals, Inc. J Comput Chem 26: 1372–1382, 2005


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