Theoretical investigation on potassium storage performance of MoSe₂ with single/dual-element doping of vanadium and niobium

Potassium-ion batteries (PIBs) offer the advantages of low cost and relatively high operating voltage and have emerged as promising energy-storage systems. Layered molybdenum diselenide (MoSe₂) is considered an attractive anode material for PIBs due to its high theoretical specific capacity and large interlayer spacing. In this work, based on first-principles calculations, single V-doped, single Nb-doped and V/Nb co-doped 1 T’-phase MoSe₂ systems were constructed to systematically investigate the modulation mechanisms of these dopants on potassium storage behaviors. The calculation results demonstrate that all the doped systems exhibit metallic characteristics, and their K adsorption strengths are significantly enhanced compared with the pristine MoSe₂. Notably, the V/Nb co-doped configuration exhibits strong K adsorption (−3.13 eV) together with an intermediate diffusion barrier of 0.28 eV between those of V-MoSe₂ (0.29 eV) and Nb-MoSe₂ (0.27 eV). Furthermore, compared with the single-doped counterparts, the V/Nb co-doped system not only preserves the preferential adsorption of K atoms at V sites but also boosts the K adsorption strength at Nb sites. This study provides valuable theoretical guidance for the rational design of high-performance MoSe₂-based anode materials for potassium-ion batteries.

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Journal
Journal of Energy Storage
Published
2026-09-28
DOI
https://doi.org/10.1016/j.est.2026.124849
Primary Topic
Advancements in Battery Materials
Type
article
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Theoretical investigation on potassium storage performance of MoSe₂ with single/dual-element doping of vanadium and niobium

Jiahui Niu, Yucheng Jia, Kang Zheng, Lu Sun et al.
Journal of Energy Storage
Advancements in Battery Materials
article

Theoretical investigation on potassium storage performance of MoSe₂ with single/dual-element doping of vanadium and niobium

Jiahui Niu, Yucheng Jia, Kang Zheng, Lu Sun, Sen Yang
article en

Abstract

Potassium-ion batteries (PIBs) offer the advantages of low cost and relatively high operating voltage and have emerged as promising energy-storage systems. Layered molybdenum diselenide (MoSe₂) is considered an attractive anode material for PIBs due to its high theoretical specific capacity and large interlayer spacing. In this work, based on first-principles calculations, single V-doped, single Nb-doped and V/Nb co-doped 1 T’-phase MoSe₂ systems were constructed to systematically investigate the modulation mechanisms of these dopants on potassium storage behaviors. The calculation results demonstrate that all the doped systems exhibit metallic characteristics, and their K adsorption strengths are significantly enhanced compared with the pristine MoSe₂. Notably, the V/Nb co-doped configuration exhibits strong K adsorption (−3.13 eV) together with an intermediate diffusion barrier of 0.28 eV between those of V-MoSe₂ (0.29 eV) and Nb-MoSe₂ (0.27 eV). Furthermore, compared with the single-doped counterparts, the V/Nb co-doped system not only preserves the preferential adsorption of K atoms at V sites but also boosts the K adsorption strength at Nb sites. This study provides valuable theoretical guidance for the rational design of high-performance MoSe₂-based anode materials for potassium-ion batteries.

Journal of Energy StorageVol. 182
Liaoning Technical University (CN)
Affordable and clean energy
Openalex Percentile: Top 22%
Advancements in Battery Materials
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Theoretical investigation on potassium storage performance of MoSe₂ with single/dual-element doping of vanadium and niobium — Jiahui Niu, Yucheng Jia, et al. · Journal of Energy Storage (2026) | TGRS Research Map | TGRS