异质结
阴极
材料科学
插层(化学)
MXenes公司
从头算
化学物理
离子
密度泛函理论
纳米技术
化学工程
光电子学
计算化学
物理化学
化学
无机化学
有机化学
工程类
作者
Farah Rafiq,Myounwoo Kim,Rakesh Parida,Jin Yong Lee
出处
期刊:Small
[Wiley]
日期:2025-08-18
卷期号:21 (39): e08380-e08380
被引量:4
标识
DOI:10.1002/smll.202508380
摘要
Abstract The development of Aluminum dual‐ion batteries (ADIBs) is hindered by the structural instability and limited capacity of cathode caused by AlCl 4 intercalation. A deeper understanding of cathode‐anion interactions and the fundamental reaction mechanisms is necessary to address these challenges. Herein, MXene‐borophene, V 2 CT x /B heterostructures are proposed as high‐performance cathodes for ADIBs, which combines the high electronic conductivity and tunable surfaces of MXenes with the mechanical strength and effective charge transport properties of borophene. First‐principles calculations show that AlCl 4 adsorption in V 2 CT x /B heterostructures is significantly stronger than in pristine V 2 CT x and B monolayers and the low diffusion barrier of V 2 CO 2 /B (0.31 eV) allows rapid charge/discharge kinetics. With a large storage capacity of 232 mAh g −1 , voltage profile exhibits an average working voltage of 1.73 V therefore emphasizing their applicability. Moreover, Ab initio molecular dynamics (AIMD) simulations verify the thermodynamic stability of the heterostructure under operating conditions. These results highlight the V 2 CO 2 /B heterostructure as a potential cathode that provides significant understanding of AlCl 4 intercalation mechanisms and helps the systematic development of next‐generation aluminum‐based energy storage devices.
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