石墨烯
异质结
寄主(生物学)
材料科学
离子
纳米技术
化学
光电子学
生物
生态学
有机化学
作者
Javed Rehman,Mehwish Khalid Butt,Adel El‐marghany,Zhipeng Li,Guochun Yang
出处
期刊:Energy materials
[OAE Publishing Inc.]
日期:2025-02-20
卷期号:5 (5)
标识
DOI:10.20517/energymater.2024.118
摘要
The rapid growth of technologies has influenced our daily lives in building efficient energy storage systems such as lithium-ion batteries (LIBs) for various electric automobiles and portable electronic devices. Graphite, the commercial anode material for LIBs, has several limitations including low lithium storage capacity (372 mAh g-1), low power rate capability, and sluggish charging for applications in grids and heavy electric vehicles. Herein, we propose a novel SnC/graphene heterostructure (SnC/G-H) as a potential anode material for LIBs and sodium-ion batteries, supported by first-principles calculations. The graphene layer in the SnC/G-H model provides high mechanical stability and electrical conductivity, enhancing device application and potentially solving the structural issues of the SnC monolayer. SnC/G-H serves as an excellent Li/Na host material, offering low average voltages (0.34-0.39 V), impressive Li/Na storage capacities of 870 mAh g-1 (exceeding those of pristine SnC and graphite), and minimal activation energy barriers of 0.043/0.079 eV, which promote efficient lithiation/delithiation and sodiation/desodiation processes. These enthralling findings indicate that the SnC/G-H could serve as an efficient host material for rechargeable LIBs and sodium-ion batteries.
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