Published November 21, 2015 | Version v1
Journal article

Anatase TiO2 nanowires functionalized by organic sensitizers for solar cells: A screened Coulomb hybrid density functional study

  • 1. Deparment of Physics, Balikesir University, Balikesir 10145 (Turkey)
  • 2. Deparment of Physics, Cornell University, Ithaca, New York 14853 (United States)
  • 3. Department of Physics, Bilkent University, Ankara 06800 (Turkey)
  • 4. Basic Sciences, TED University, Ankara 06420 (Turkey)

Description

The adsorption of two different organic molecules cyanidin glucoside (C21O11H20) and TA-St-CA on anatase (101) and (001) nanowires has been investigated using the standard and the range separated hybrid density functional theory calculations. The electronic structures and optical spectra of resulting dye–nanowire combined systems show distinct features for these types of photochromophores. The lowest unoccupied molecular orbital of the natural dye cyanidin glucoside is located below the conduction band of the semiconductor while, in the case of TA-St-CA, it resonates with the states inside the conduction band. The wide-bandgap anatase nanowires can be functionalized for solar cells through electron-hole generation and subsequent charge injection by these dye sensitizers. The intermolecular charge transfer character of Donor-π-Acceptor type dye TA-St-CA is substantially modified by its adsorption on TiO2 surfaces. Cyanidin glucoside exhibits relatively stronger anchoring on the nanowires through its hydroxyl groups. The atomic structures of dye–nanowire systems re-optimized with the inclusion of nonlinear solvation effects showed that the binding strengths of both dyes remain moderate even in ionic solutions

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Applied Physics
Journal Volume
118
Journal Issue
19
Journal Page Range
p. 194301-194301.10
ISSN
0021-8979
CODEN
JAPIAU

Optional Information

Notes
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