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Updated: May 13, 2025

The Effect of Interfacial Chemical Bonding in TiO2-SiO2 Composites on Their Photocatalytic NOx Abatement Performance
Published on: July 4, 2017
Insight into Oxidative Desulfurization Mechanism from the Interaction between Different Facets of TiO2 and V Single
Peng Zheng1, Zitao Zhu1, Chengkun Xiao2
1Key Laboratory on Resources Chemicals and Materials of Ministry of Education, Shenyang University of Chemical Technology, Shenyang 110142, China.
Abstract:
This research was devoted to investigating the oxidative desulfurization (ODS) reaction of thiophene over V1-TiO2 and V2O5-TiO2 surfaces through density functional theory calculations. The calculation results showed that V single atoms and V2O5 clusters exhibited significantly different binding energies and charge transfer characteristics over the different TiO2 facets. The density of states and orbital interaction analyses further revealed that V single atoms exhibited a more pronounced advantage in adsorbing and activating the O2 molecules compared to the V2O5 clusters, which was primarily attributed to their unique electronic structure and coordination environment. Based on the calculation results, the V single atoms exhibited the highest catalytic activity in the formation of sulfoxide over the TiO2 (101) facet. Additionally, this work found that the extra oxygen (Oext) species also played a key role in reducing the reaction barriers and promoting the formation of sulfoxides, with Oext species directly contributing to the V2O5-catalyzed thiophene ODS reaction. The Oext species also promoted the continuous conversion of sulfoxides to sulfones. Comprehensive analysis indicated that there was a significant synergistic effect between V single atoms and V2O5 clusters, which collectively promoted the effective ODS process of thiophene.
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