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February 25, 2026Physical Chemistry Chemical Physics2 citations

Theoretical insights into 2D siloxene as a promising anode material for lithium-ion batteries

MKMajid EL KassaouiOZOthmane ZakirKMKhadija El Maalam

Key Points

  • This research investigates the theoretical properties of 2D siloxene as a potential anode material for lithium-ion batteries.
  • Conducted first-principles calculations to explore electrochemical factors at the atomic level.
  • Analyzed lithium adsorption behavior and binding energy.
  • Examined kinetic properties and voltage profiles.
  • Siloxene shows a reversible capacity of 2300 mAh g-1 and a high theoretical capacity of 1129.18 mAh g-1.
  • It possesses strong lithium storage capability with a binding energy of -3.25 eV.
  • Li+ migration on the siloxene surface is fast with a low barrier energy of 0.34 eV.

Abstract

Two-dimensional siloxene (Si6O3H6) has garnered significant interest as an anode material for lithium-ion batteries (LIBs) in the development of energy storage devices, delivering an experimental reversible capacity of 2300 mAh g-1. To complement the experimental efforts and to gain an in-depth theoretical understanding of the mechanisms behind its diverse electrochemical performance, we systematically explored several influencing electrochemical factors, including Li-adsorption behavior and binding energy, kinetic analysis, voltage profiles, and specific capacity at the atomic level using first-principles calculations. The 2D siloxene monolayer (OH-Si-H) exhibits high structural and thermal stability, excellent electronic conductivity, strong lithium storage capability (-3.25 eV), a high theoretical capacity of 1129.18 mAh g-1 - up to three times greater than that of commonly used graphite - and a low average open-circuit voltage of 0.66 V. More importantly, the Li-adsorbed siloxene monolayer maintains a high stiffness of 201.23 N m-1, demonstrating its mechanical robustness under electrochemical cycling. Li+ migration on the siloxene surface is confirmed to be fast on the lower side, owing to a low barrier energy of about 0.34 eV and the corresponding diffusion coefficient of 1.95 × 10-6 cm2 s-1. With these unique properties, 2D siloxene can serve as an excellent anode material for LIBs.

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Cite This Study

Kassaoui et al. (2026) studied this question.

synapsesocial.com/papers/699e91b2f5123be5ed04f662https://doi.org/10.1039/d5cp04846j
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