4.8 Article

Oxide nanowires for solar cell applications

期刊

NANOSCALE
卷 4, 期 5, 页码 1436-1445

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c2nr11595f

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资金

  1. U.S. Department of Energy, Office of Basic Energy Sciences, Division of Materials Sciences [DE-FG02-07ER46467]
  2. National Science Foundation [DMR 1035196]
  3. Air Force Office of Scientific Research (AFOSR-MURI) [FA9550-06-1-0326]
  4. University of Washington TGIF
  5. Office of Research at University of Washington
  6. Washington Research Foundation
  7. Intel Corporation

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Oxide nanowire arrays were studied for their applications to solar cells. It was demonstrated that the nanowires could provide direct pathways for electron transport in dye-sensitized solar cells and therefore, while forming photoelectrode films, they offered better suppression of charge recombination than nanoparticles. However, the photoelectron films consisting of nanowires suffered a disadvantage in giving large surface area for dye adsorption. Such a shortcoming of nanowires had been exemplified in this paper illustrating that it could be well compensated by incorporating with nanoparticles to form a nanoparticle-nanowire array hybrid photoelectrode film. The oxide nanowires were also demonstrated to be able to enhance the performance of inverted structure polymer solar cells as a cathode buffer layer by establishing a large interface with the polymers so as to facilitate the transport of photogenerated electrons from the polymer to the electron collecting electrode. Such an enhancement effect could be further boosted while the nanowires were replaced with nanotubes; the latter may build up larger interface with the polymers than the former and therefore facilitates the electron transport more efficiently.

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