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Electrochromic properties of W1–x–yNixTiyO3 thin films made by DC magnetron sputtering

  • Centro de Investigacion y de Estudios Avanzados del Instituto Politécnico Nacional
    ,
  • Uppsala University
    ,
  • Departamento de Nanociencias y Nanotecnología
    ,
  • Department of Engineering Sciences
Research Output:
Contribution to journal
Article
Peer-review

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Citations
SciVal
Citations
10
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FWCI
0.43
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Author count
4
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Paper percentile
51

Abstract

We investigated the electrochromic properties of tungsten–nickel–titanium oxide (W1–x–yNixTiyO3) thin films. Special emphasis was put on W0.83–xNixTi0.17O3 since this composition gave the highest electrochemical durability. The films were deposited onto indium–tin oxide coated glass by reactive DC magnetron sputtering, and cyclic voltammetry as well as optical transmittance measurements were performed in an electrolyte of 1 M LiClO4 in propylene carbonate. The potential window was chosen so as to cause rapid degradation of the samples. Elemental compositions were obtained by Rutherford backscattering spectroscopy and structural information by X-ray diffraction. We verified that the titanium additive improved the electrochemical durability of tungsten-oxide-based films and also documented that a further addition of nickel was unable to enhance the EC performance to any significant degree.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 292-299 (8 pages)

Journal (Volume, Issue Number)

Thin Solid Films (Volume 615)

Publication milestones

  • Published - 30/09/2016

Publication status

Published - 30/09/2016

ISSN

0040-6090

Publication IDs

  • Scopus: 84978943234

Funding Details

We are grateful to Daniel Primetzhofer and the staff of the Tandem Accelerator Laboratory at Uppsala University for support with RBS measurements. MML and MAA thank the Mexican Council for Science and Technology ( CONACyT No. 290936 and No. 266848 ) for financial assistance to carry out research as visiting PhD student and as postdoctoral researcher at Uppsala University, respectively. Our work received additional support by the European Research Council under the European Community's Seventh Framework Program ( FP7/2007–2013 )/ERC Grant Agreement No. 267234 (“GRINDOOR”).
FundersFunding numbers
European Community's Seventh Framework Program
-
FP7/2007
-
Mexican Council for Science and Technology
-
FP7
267234
ERC
-
CONACYT
266848, 290936
Uppsala Universitet
-