Full-text resources of PSJD and other databases are now available in the new Library of Science.
Visit https://bibliotekanauki.pl

PL EN


Preferences help
enabled [disable] Abstract
Number of results
2013 | 123 | 2 | 386-389

Article title

Sponge-like Porous ZnO Photoanodes for Highly Efficient dye-sensitized Solar Cells

Content

Title variants

Languages of publication

EN

Abstracts

EN
We propose a 3D branched ZnO nanostructure for the fabrication of highly efficient dye-sensitized solar cell photoanodes. A coral-shaped structured Zn layer was deposited by radio frequency magnetron sputtering at room temperature onto fluorine-doped tin oxide/glass sheets and then thermally oxidized in ambient atmosphere, obtaining a high-density branched ZnO film. The porous structure provides a large surface area, and, as a consequence, a high number of adsorption sites, and the size and spacing of the nanostructures (on the order of the exciton diffusion length) are optimal for good electron collection efficiency. The proposed synthesis technique is simple and scalable and the reproducibility of the growth results was tested. The crystalline phase of the film was investigated, evidencing the complete oxidation and the formation of a pure wurtzite crystalline structure. ZnO-based solar harvesters were fabricated in a microfluidic architecture, using conventional sensitizer and electrolyte. The dependence of the cell efficiency on dye incubation time and film thickness was studied with I-V electrical characterization and electrochemical impedance spectroscopy. The obtained conversion efficiency values, with a maximum value of 4.83%, confirm the highly promising properties of this material for the implementation in dye-sensitized solar cell photoanodes.

Keywords

Contributors

author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
  • Dipartimento Scienza Applicata e Tecnologia, Politecnico di Torino Corso Duca degli Abruzzi 24, Torino, 10129, Italy
author
  • Dipartimento Scienza Applicata e Tecnologia, Politecnico di Torino Corso Duca degli Abruzzi 24, Torino, 10129, Italy
author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
  • Dipartimento Scienza Applicata e Tecnologia, Politecnico di Torino Corso Duca degli Abruzzi 24, Torino, 10129, Italy
author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
  • Dipartimento Scienza Applicata e Tecnologia, Politecnico di Torino Corso Duca degli Abruzzi 24, Torino, 10129, Italy
author
  • Center for Space Human Robotics @ PoliTo, Istituto Italiano di Tecnologia, Corso Trento 21, Torino, 10129, Italy
  • Dipartimento Scienza Applicata e Tecnologia, Politecnico di Torino Corso Duca degli Abruzzi 24, Torino, 10129, Italy

References

  • [1] Q. Zhang, C.S. Dandeneau, X. Zhou, G. Cao, Adv. Mater. 21, 4087 (2009)
  • [2] K. Keis, E. Magnusson, H. Lindstrom, S.E. Lindquist, A. Hagfeldt, Sol. Energy Mater. Sol. Cells 73, 51 (2002)
  • [3] D. Calestani, M.Z. Zha, L. Zanotti, M. Villani, A. Zappettini, Cryst. Eng. Comm. 13, 1707 (2011)
  • [4] Q.C. Li, V. Kumar, Y. Li, H.T. Zhang, T.J. Marks, R.P.H. Chang, Chem. Mater. 17, 1001 (2005)
  • [5] J.H. Xiang, P.X. Zhu, Y. Masuda, M. Okuya, S. Kaneko, K. Koumoto, J. Nanosci. Nanotechnol. 6, 1797 (2006)
  • [6] A. Tiwari, M. Snure, J. Nanosci. Nanotechnol. 8, 3981 (2008)
  • [7] D. Calestani, M. Zha, R. Mosca, A. Zappettini, M.C. Carotta, V. Di Natale, L. Zanotti, Sens. Actuat. B 144, 472 (2010)
  • [8] R. Gazia, A. Chiodoni, S. Bianco, A. Lamberti, M. Quaglio, A. Sacco, E. Tresso, P. Mandracci, C.F. Pirri, Thin Solid Films 524, 107 (2012)
  • [9] A. Lamberti, A. Sacco, S. Bianco, E. Giuri, M. Quaglio, A. Chiodoni, E. Tresso, Microelectron. Eng. 88, 2308 (2011)
  • [10] A. Lamberti, R. Gazia, A. Sacco, S. Bianco, M. Quaglio, A. Chiodoni, E. Tresso, C.F. Pirri, 'Coral-shaped ZnO nanostructures for dye-sensitized Solar Cell photoanodes', Progr. Photovolt. Res. Appl., in press, 2012
  • [11] M.A. Baker, W. Gissler, S. Klose, M. Trampert, F. Weber, Surf. Coat. Technol. 125, 207 (2000)
  • [12] A.F. Jankowski, J.P. Hayes, J. Vac. Sci. Technol. A 21, 422 (2003)
  • [13] I. Gonzalez-Valls, M. Lira-Cantu, Energy Environ. Sci. 2, 19 (2009)
  • [14] A. Sacco, A. Lamberti, M. Quaglio, S. Bianco, E. Tresso, A.-L. Alexe-Ionescu, C.F. Pirri, Int. J. Photoenergy 2012, 216780 (2012)
  • [15] T.P. Chou, Q. Zhang, G. Cao, J. Phys. Chem. C 111, 18804 (2007)
  • [16] N. Memarian, I. Concina, A. Braga, S.M. Rozati, A. Vomiero, G. Sberveglieri, Angew. Chem. Int. Ed. 123, 12321 (2011)
  • [17] K. Keis, J. Lindgren, S.E. Lindquist, A. Hagfeldt, Langmuir 16, 4688 (2000)
  • [18] Y. Liu, X. Sun, Q. Tai, H. Hu, B. Chen, N. Huang, B. Sebo, X.-Z. Zhao, J. Power Sources 196, 475 (2011)
  • [19] P.J. Cameron, L.M. Peter, J. Phys. Chem. B 109, 7392 (2005)
  • [20] S.M. Waita, B.O. Aduda, J.M. Mwabora, C.G. Granqvist, S.-E. Lindquist, G.A. Niklasson, A. Hagfeldt, G. Boschloo, J. Electroanal. Chem. 605, 151 (2007)

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv123n2077kz
JavaScript is turned off in your web browser. Turn it on to take full advantage of this site, then refresh the page.