Theoretical study of ether group substitution effects on the electrochemical properties of Ti-modified vanadium-oxide clusters

Abstract

In this study, the effects of ether group substitution on the electrochemical properties of [Ti2V4O5(OCH3)14] (Ti2V4) and [Ti3V3O4(OCH3)15]+ (Ti3V3+) were investigated by combining density functional theory (DFT) calculations and molecular dynamics (MD) simulations. The lowest unoccupied molecular orbital energy decreases from Ti2V4 (−1.98 eV) to the ether-substituted derivatives of Ti2V4 (−2.04 eV), and from Ti3V3+ (−2.55 eV) to the ether-substituted derivatives of Ti3V3+ (−2.64 eV). The ether substitution affects the electrochemical window of Ti3V3+ derivatives that increases from 2.69 V for Ti3V3+ to 2.97 V for [Ti3V3O4(OCH3)12(OCH2)3CCH2OC2H4OCH3]+ (Ti3V3TRIOLC+). The ether substitution also affects the interaction between vanadium-oxide clusters and both the solvent CH3CN and the supporting electrolyte tetrabutylammonium hexafluorophosphate ([NBu4][PF6]), leading to a substantial increase in the diffusion coefficient of the Ti3V3+ series: from 5.8 × 10−6 cm2 s−1 for Ti3V3+ up to 7.8 × 10−6 cm2 s−1 for [Ti3V3O4(OCH3)12(OCH2)3CCH2OCH3]+ (Ti3V3TRIOLB+) and 9.2 × 10−6 cm2 s−1 for Ti3V3TRIOLC+. Radial distribution function (RDF) and electrostatic potential (ESP) analyses further indicate that ether substitution modulates the surface charge density and enhances the hydrogen bonding interactions between CH3CN and vanadium-oxide clusters. These findings suggest that Ti3V3TRIOLC+ possesses superior electrochemical performance, highlighting its potential as a promising electroactive material for RFBs.

Graphical abstract: Theoretical study of ether group substitution effects on the electrochemical properties of Ti-modified vanadium-oxide clusters

Supplementary files

Article information

Article type
Paper
Submitted
07 Oct 2025
Accepted
10 Feb 2026
First published
12 Feb 2026

Dalton Trans., 2026, Advance Article

Theoretical study of ether group substitution effects on the electrochemical properties of Ti-modified vanadium-oxide clusters

K. Wang, S. Wu, S. Wei and L. Yan, Dalton Trans., 2026, Advance Article , DOI: 10.1039/D5DT02395E

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