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Journal of Physics: Conference SeriesVolume 1124, 2018, Article number 022004

Nanostructural features of anodic zirconia synthesized using different temperature modes(Conference Paper)(Open Access)

  • Petrenyov, I.A.,
  • Kamalov, R.V.,
  • Vokhmintsev, A.S.,
  • Martemyanov, N.A.,
  • Weinstein, I.A.
  Save all to author list
  • aNANOTECH Centre, Ural Federal University, Yekaterinburg, 620002, Russian Federation
  • bInstitute of Solid State Chemistry, Russian Academy of Sciences, Yekaterinburg, 620990, Russian Federation

Abstract

Nanotubular and nanoporous structures of ZrO 2 were synthesized by potentiostatic anodization with varying the temperatures of anode in the range of T A = 0 - 90 °C and electrolyte in the range of T El = 20 - 50 °C. It was shown that difference between T A and T El had significant influence on growth rate and morphology type of zirconia nanostructures. Optimal parameters of thermal modes for nanotubular ZrO 2 synthesis were discussed. © 2018 Institute of Physics Publishing. All rights reserved.

Indexed keywords

Engineering controlled terms:ElectrolytesZirconiaNanostructuresOptoelectronic devicesPhotonics
Engineering uncontrolled termsAnodizationsNanoporous structuresNanostructuralNanotubularOptimal parameterPotentiostaticsTemperature modesThermal modes
Engineering main heading:Growth rate
  • ISSN: 17426588
  • Source Type: Conference Proceeding
  • Original language: English
  • DOI: 10.1088/1742-6596/1124/2/022004
  • Document Type: Conference Paper
  • Publisher: Institute of Physics Publishing


© Copyright 2019 Elsevier B.V., All rights reserved.

Cited by 6 documents

Vokhmintsev, A.S. , Petrenyov, I.A. , Kamalov, R.V.
Quantization of Electrical Conductance in Layered Zr/ZrO2/Au Memristive Structures
(2023) Doklady Physical Chemistry
Chopra, D. , Guo, T. , Ivanovski, S.
Single-step nano-engineering of multiple micro-rough metals via anodization
(2023) Nano Research
Vokhmintsev, A.S. , Petrenyov, I.A. , Kamalov, R.V.
Thermally stimulated luminescence of oxygen-deficient zirconia nanotubes
(2022) Journal of Luminescence
View details of all 6 citations
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