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Investigation of WO3 Electrodeposition Leading to Nanostructured Thin Films.


ABSTRACT: Nanostructured WO3 represents a promising material for electrochromic and sensing devices. In this scenario, electrodeposition is a promising low-cost approach for careful production. The electrodeposition of tungsten oxide film from a peroxo-tungstic-acid (PTA) solution is investigated. WO3 is synthetized onto Indium doped Tin Oxide (ITO) substrates, in a variety of shapes, from a fragmentary, thin layer up to a thick continuous film. Samples were investigated by scanning electron (SEM) and atomic force microscopy (AFM), Rutherford backscattering spectrometry (RBS), X-ray Diffraction analysis (XRD), energy gap measurement. Electrodeposition current curves are compared with characterization results to model the growth process. Early stages of electrodeposition are characterized by a transient cathodic current revealing an instantaneous nucleation followed by a diffusion limited process. A quantitative analysis of W deposition rate and current at working electrode validates a microscopic model for WO3 electrodeposition driving the process towards nanostructured versus continuous WO3 film.

SUBMITTER: Mineo G 

PROVIDER: S-EPMC7466470 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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Investigation of WO<sub>3</sub> Electrodeposition Leading to Nanostructured Thin Films.

Mineo G G   Ruffino F F   Mirabella S S   Bruno E E  

Nanomaterials (Basel, Switzerland) 20200730 8


Nanostructured WO<sub>3</sub> represents a promising material for electrochromic and sensing devices. In this scenario, electrodeposition is a promising low-cost approach for careful production. The electrodeposition of tungsten oxide film from a peroxo-tungstic-acid (PTA) solution is investigated. WO<sub>3</sub> is synthetized onto Indium doped Tin Oxide (ITO) substrates, in a variety of shapes, from a fragmentary, thin layer up to a thick continuous film. Samples were investigated by scanning  ...[more]

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