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Modulation engineering of 2D MXene-based compounds for metal-ion batteries

机译:调制工程2 d MXene-based化合物金属离子电池

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摘要

The increasing demand for next generation rechargeable metal-ion batteries (MIBs) has boosted the exploration of high-performance electrode materials. Two-dimensional (2D) transition metal carbides/nitrides (MXenes), the largest family of 2D materials, show extremely competitive potential applications in electrodes due to their excellent electrical conductivity, chemical diversity, and large specific surface area. However, the problems of uncontrollable surface functionalization, interlayer restack and collapse significantly hinder their practical applications. To this end, effective strategies to modify traditional MXenes for targeted electrochemical performance are highly desirable. In this mini review, we briefly summarize the most recent and constructive development in the modulation engineering of 2D MXene-based transition-metal compounds. Firstly, to modify traditional MXenes by intercalating, surface decorating and constructing heterostructures. Secondly, to design novel transition-metal compounds beyond MXenes by precisely controlling the atomic structures, proportions and compositions of constituent elements. Moreover, the critical challenges and perspectives for future research on MXene-based materials are also presented.
机译:下一代的需求增加可充电电池金属离子(mib)提高了高性能的探索电极材料。过渡金属碳化物和氮化物(MXenes)最大的二维材料,显示非常在电极竞争潜在应用由于其优良的导电性,化学多样性,和大的比表面积区域。表面功能化,夹层操控崩溃显著阻碍他们的实践应用程序。修改传统MXenes目标电化学性能是非常可取的。在这个迷你回顾中,我们简要总结最近的和建设性的发展2 d MXene-based调制工程过渡金属化合物。传统MXenes置入到表面装修和构建异质结构。其次,设计新颖的过渡金属化合物除了MXenes通过精确控制原子结构、比例和成分的组成元素。关键的挑战和视角未来研究MXene-based材料也提出了。

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