Abstract
Lithium-ion batteries have delivered outstanding charge storage performance due to their high energy density and low cost and also more specialized energy conversion device for next-generation electrical appliances. Herein, we offered the ultrathin Ti3C2 MXene (titanium carbide) nanosheets/vanadium nitride (VN)@carbon (C) nanocomposites for lithium-ion storage application as a high-capacity anode material. The proposed anode material is Ti3C2 MXene nanosheets/VN@C composite as synthesized via chemical precipitation. The real-time half-cell of Ti3C2 MXene nanosheets/VN@C composite shows the excellent initial discharge specific capacity of 1237 mAh g-1 at a current density of 0.1 A g-1 with a reverse rate capacity of 685 mAh g-1. The high specific capacity of 645 mAh g-1 has been attained even after 500 cycles at a current density of 0.1 A g-1. This type of rich reverse rate capacity and stability of the anode electrode is responsible due to the high conductivities and surface areas of Ti3C2 MXene nanosheets/VN@C composite, which is provided easy accessibility of Li+ ions.
Cite
CITATION STYLE
Nunna, G. P., Pitcheri, R., Al-Asbahi, B. A., Sangaraju, S., Khan, B., & Jo, K. T. (2023). Ti3C2 MXene Nanosheets/Vanadium Nitride@Carbon Composite Electrodes for High-Performance Lithium-Ion Batteries. International Journal of Energy Research, 2023. https://doi.org/10.1155/2023/8091900
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