电催化剂
电化学
双金属片
电极
钒
电池(电)
吸附
化学
锂(药物)
电子转移
氧气
氧化还原
化学工程
无机化学
材料科学
催化作用
光化学
物理化学
有机化学
工程类
内分泌学
医学
功率(物理)
物理
量子力学
作者
Pengfei Liu,Haoyang Xu,Xinxiang Wang,Guilei Tian,Xiaojuan Wen,Chuan Wang,Chenrui Zeng,Shuhan Wang,Fengxia Fan,Ting Zeng,Sheng Liu,Chaozhu Shu
标识
DOI:10.1016/j.jcis.2023.11.027
摘要
Lithium-oxygen (Li-O2) battery possesses high theoretical energy density of ∼ 3500 Wh kg-1, yet the sluggish kinetics of oxygen redox reactions hinder its practical application. Herein, TiVC bimetallic MXene solid solution is prepared as the efficient electrocatalyst for Li-O2 battery. The results of experiment and theoretical calculations reveal that through the formation of Ti-C-V bond in TiVC, electrons transfer from V site to Ti site enhances electron delocalization of V sites, which causes the upshift of d band center of V site and strengthens the adsorption of intermediate products (LiO2) on TiVC electrode surface. Due to the strong adsorption of intermediates, the film-like Li2O2 can be formed on TiVC electrode via the surface-adsorbed pathway, which ensures the full contact between the electrode and discharged product and thus facilitates the charge transfer between TiVC electrode and oxygen species during charge process. As a consequence, the TiVC based Li-O2 battery exhibits superior electrochemical performance including large discharge capacity (12780 mAh/g) and extended cycling stability (422 cycles) at the current density of 300 mA g-1.
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