...
首页> 外文期刊>Applied Surface Science >First-principle study of electronic properties and quantum capacitance of lithium adsorption on pristine and vacancy-defected O-functionalized Ti_2C MXene
【24h】

First-principle study of electronic properties and quantum capacitance of lithium adsorption on pristine and vacancy-defected O-functionalized Ti_2C MXene

机译:锂吸附对原始和空位缺陷的O-官能化Ti_2C mx的第一原理研究

获取原文
获取原文并翻译 | 示例

摘要

The electronic structure, surface charge storage and quantum capacitance of lithium adsorption on pristine and vacancy-defected Ti2CO2 MXene are theoretically investigated by density functional theory. Negative adsorption energies (F-ads) of pristine Ti2CO2 (PT) and C-vacancy Ti2CO2 (VT) monolayers adsorbed by Li atom indicate that the adsorption processes of Li atom on systems are exothermic and favorable to adsorption. The most stable configurations are confirmed for the Li-adsorbed PT and VT monolayers. Pristine Ti2CO2 (PT) monolayer is a semiconductor with the bandgap of 0.2035 eV, while C-vacancy Ti2CO2 (VT) monolayer has the metallic nature. The adsorption of Li atom on PT monolayer makes the system undergo the semiconductor-metal transition, while the adsorption of Li atom on VT monolayer doesn't change the metal nature. The magnetism is observed for the system with Li atom directly adsorbed on top of hollow site (VT-LH), and the total magnetic moments is 0.18 mu g. Charge density differences of the adsorption of Li atom on PT and VT monolayers are further explored. The introduction of C-vacancy improves the quantum capacitances of the Li-adsorbed systems at 0 V, and Li-adsorbed PT and VT monolayers have high quantum capacitance because of the large density of states near Fermi level, and are suitable for cathode material.
机译:通过密度函数理论理论上研究了锂吸附锂吸附的电子结构,表面电荷存储和量子电容。由Li Atom吸附的原始Ti2CO2(Pt)和C型空位Ti2CO2(VT)单层的阴性吸附能量(F-ADS)表明系统上Li Atom的吸附过程是放热的并且有利于吸附。为锂吸附的PT和VT单层确认最稳定的配置。原始Ti2CO2(Pt)单层是具有0.2035eV的带隙的半导体,而C空位Ti2CO2(VT)单层具有金属性质。 Li Atom对Pt单层的吸附使得系统经历半导体 - 金属转变,而Li Atom对VT单层的吸附不会改变金属性质。对于直接吸附在中空部位(VT-LH)顶部的Li原子的系统观察到磁性,并且总磁矩为0.18μg。进一步探索了Li Atom对PT和VT单层的吸附的电荷密度差异。 C-空位的引入改善了0V的Li-吸附系统的量子电容,并且Li-吸附的Pt和VT单层具有高量子电容,因为Fermi水平附近的状态大,并且适用于阴极材料。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号