4.6 Article

Electrolyte Effects On Electron Transport and Recombination at ZnO Nanorods for Dye-Sensitized Solar Cells

Journal

JOURNAL OF PHYSICAL CHEMISTRY C
Volume 114, Issue 41, Pages 17880-17888

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp106302m

Keywords

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Funding

  1. NSF [ECCS-095073]
  2. NASA EPSCoR [NNX09AP67A]
  3. DNI [48733DNI10]
  4. South Dakota NSF EPSCoR/PANS program
  5. U.S. II:Taro-nem or Energy
  6. Office of Science, Office of Basic Energy Sciences [DE-ACO2-06C1111357]
  7. Office Of The Director
  8. EPSCoR [0903804] Funding Source: National Science Foundation

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Electrolyte effects on electron transport and recombination at ZnO nanorods (nd-ZnO) were studied by electrochemical impedance spectroscopy (EIS) in dye-sensitized solar cells (DSSCs). Different electrolyte systems were prepared by gradually tickling tert-butylpyridine (TBP) and guanidinium thiocyanate (GuSCN) and replacing Oil with 1-butyl-3-methylimidazolium iodide (BMII). The introduction of TOP;and GuSCN, and the replacement of Lil with BMII suppressed charge recombination at the nd-ZnO/electrolyte interface, increased electron lifetime (tau(n)), improved electron transport, and reduced collection time (tau(d)) on nd-ZnO. In addition. they improved the electron diffusion coefficient (D-n) and elongated the effective diffusion length (L-n). The electron transfer coefficient (beta) at the ZnO/eleetrolyte interlace was increased from 0.34 to 0.44, which was a good sign of improvement in fill factor (FF). In addition, the ohmic series resistance was reduced from 17.35 to 4.99 Omega.cm(2) and the charge transfer resistance was decreased from 18.49 to 7.09 Omega.cm(2) at the electrolyte/Pt interface. Nd-ZnO DSSCs using different electrolytes were tested and the improvement of open circuit voltage (V-oc), short circuit current density (J(sc)), fill factor (FF), and incident photon to electron conversion efficiency (IPCE) was in good agreement with the findings from the EIS data.

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