Voltammetric studies of TiO2-nanographite based composites

Titanium dioxide (TiO 2 ) is a promising electrode material for use as an electrode in electrochemical energy storage. However, its low electrical conductivity limits its performance. This study investigated the influence of nanographite incorporation and ionic liquid (IL) addition on the structural and electrochemical properties of TiO 2 . Hydrothermally synthesized TiO 2 nanoparticles and TiO 2 modified with the ILs triethylammonium-propane-sulfonic acid tetrafluoroborate ([TEA-PS][BF 4 ]) (TB) and 1-butyl-3-methylimidazolium hydrogen sulfate ([BMIM][HSO 4 ]) (BM) were used to prepare thick-film electrodes of pure TiO 2 (T) and TiO 2 /nanographite (T/NG) composites. Diffractograms revealed TiO 2 oxide phases in the anatase form, along with characteristic graphite peaks. Scanning electron microscopy revealed porous films composed of agglomerated TiO 2 , while Raman spectroscopy confirmed the integrity of the graphitic framework through the characteristic D, G, and 2D bands. Cyclic voltammetry showed that the incorporation of nanographite increased the voltammetric charge by up to three orders of magnitude compared with pure TiO 2 . After normalization by the active mass, the T/NG/BM electrode exhibited the highest specific charge, reaching 6.93 C g −1 under cathodic polarization, whereas pure TiO 2 remained below 0.22 C g −1 . The distinct electrochemical responses obtained for the two ionic liquids indicate that they modify the interfacial charge-storage mechanism through different kinetic pathways. Overall, the results support a hybrid charge-storage mechanism involving surface-confined Faradaic reactions coupled with pseudocapacitive contributions at the TiO 2 /nanographite interface.

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Publication Details

Journal
Journal of Solid State Electrochemistry
Published
2026-10-09
DOI
https://doi.org/10.1007/s10008-026-06715-9
Primary Topic
Electrochemical sensors and biosensors
Type
article
Field-Weighted Citation Impact
0.00

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article

Voltammetric studies of TiO2-nanographite based composites

Rubens Nunes de Faria, Márcio Sousa Góes, Fabio Plut Fernandes, Janine Carvalho Padilha et al.
Journal of Solid State Electrochemistry
Electrochemical sensors and biosensors
article

Voltammetric studies of TiO2-nanographite based composites

Rubens Nunes de Faria, Márcio Sousa Góes, Fabio Plut Fernandes, Janine Carvalho Padilha, Ana Paula G. S. Castro, Hussein A. K. Moussa, B. R. C. Cairo, Fábio Santos da Silva, C. H. A. Cairo
article en

Abstract

Titanium dioxide (TiO 2 ) is a promising electrode material for use as an electrode in electrochemical energy storage. However, its low electrical conductivity limits its performance. This study investigated the influence of nanographite incorporation and ionic liquid (IL) addition on the structural and electrochemical properties of TiO 2 . Hydrothermally synthesized TiO 2 nanoparticles and TiO 2 modified with the ILs triethylammonium-propane-sulfonic acid tetrafluoroborate ([TEA-PS][BF 4 ]) (TB) and 1-butyl-3-methylimidazolium hydrogen sulfate ([BMIM][HSO 4 ]) (BM) were used to prepare thick-film electrodes of pure TiO 2 (T) and TiO 2 /nanographite (T/NG) composites. Diffractograms revealed TiO 2 oxide phases in the anatase form, along with characteristic graphite peaks. Scanning electron microscopy revealed porous films composed of agglomerated TiO 2 , while Raman spectroscopy confirmed the integrity of the graphitic framework through the characteristic D, G, and 2D bands. Cyclic voltammetry showed that the incorporation of nanographite increased the voltammetric charge by up to three orders of magnitude compared with pure TiO 2 . After normalization by the active mass, the T/NG/BM electrode exhibited the highest specific charge, reaching 6.93 C g −1 under cathodic polarization, whereas pure TiO 2 remained below 0.22 C g −1 . The distinct electrochemical responses obtained for the two ionic liquids indicate that they modify the interfacial charge-storage mechanism through different kinetic pathways. Overall, the results support a hybrid charge-storage mechanism involving surface-confined Faradaic reactions coupled with pseudocapacitive contributions at the TiO 2 /nanographite interface.

Journal of Solid State Electrochemistry
Embraer (Brazil) (BR), Universidade Federal da Integração Latino-Americana (BR), Instituto de Pesquisas Energéticas e Nucleares (BR)
Fundacion Araucaria, Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Conselho Nacional de Desenvolvimento Científico e Tecnológico, Financiadora de Estudos e Projetos, Universidade de São Paulo, Universitas Lampung, Embraer
Openalex Percentile: Top 23%
Electrochemical sensors and biosensors
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