The S-functionalized Ti3C2 Mxene as a high capacity electrode material for Na-ion batteries: a DFT study.
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Summary
Similar to the Ti3C2S2 monolayer, other MXenes with a high charge density difference and suitable lattice constant can be formed, and thus the energy storage properties are worth further study.
- Type
- article
- Published
- 2018-02-15
- Cited by
- 139
- References
- 43
- OpenAlex
- https://openalex.org/W2783660044
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206110200
Keywords
MXenes, Electrode, Materials science, Energy storage, Ion
References
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Cited by
- Theoretical investigation of zirconium carbide MXenes as prospective high capacity anode materials for Na-ion batteries
- Qualitative DFT study of lateral interactions between nitrogen molecules adsorbed on a V3C2 MXene sheet
- Theoretical prediction of the structural, electronic, mobility, and dynamic properties of Mo3N2T2 (T = H, O and OH) with Li adsorption feature
- Functionalization Ti3C2 MXene by the adsorption or substitution of single metal atom
- Applications of 2D MXenes in energy conversion and storage systems.
- Mo2TiC2 MXene: A Promising Catalyst for Electrocatalytic Ammonia Synthesis
- A 3D flower-like VO2/MXene hybrid architecture with superior anode performance for sodium ion batteries
- Modelling high-performing batteries with Mxenes: The case of S-functionalized two-dimensional nitride Mxene electrode
- Atomic Sulfur Covalently Engineered Interlayers of Ti3C2 MXene for Ultra‐Fast Sodium‐Ion Storage by Enhanced Pseudocapacitance
- Effect of surface termination on the lattice thermal conductivity of monolayer Ti3C2Tz MXenes
- Lattice constant-dependent anchoring effect of MXenes for lithium-sulfur (Li-S) batteries: a DFT study.
- Novel two-dimensional molybdenum carbides as high capacity anodes for lithium/sodium-ion batteries
- Investigation of two‐dimensional hf‐based MXenes as the anode materials for li/na‐ion batteries: A DFT study
- Ordered double-M elements MXenes TiMC: Large in-plane stiffness and ferromagnetism
- Origin of theoretical pseudocapacitance of two-dimensional supercapacitor electrodes Ti3C2T2 (T = bare, O, S)
- Theoretical Investigation of V3C2 MXene as Prospective High-Capacity Anode Material for Metal-Ion (Li, Na, K, and Ca) Batteries
- Sulfur-functionalized vanadium carbide MXene (V2CS2) as a promising anchoring material for lithium-sulfur batteries.
- Net-Y as a high performance electrode material for Na-ion battery
- Investigate of lateral interactions between ammonia molecules adsorbed on a V3C2 MXenes sheet of DFT study and statistical physics
- A General Atomic Surface Modification Strategy for Improving Anchoring and Electrocatalysis Behavior of Ti3C2T2 MXene in Lithium-Sulfur Batteries.
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