Heterostructures of MXenes and transition metal oxides for supercapacitors: an overview

MXenes公司 超级电容器 异质结 堆积 材料科学 纳米技术 过渡金属 导电体 光电子学 化学 复合材料 电容 电极 有机化学 催化作用 物理化学 生物化学
作者
Shagufi Naz Ansari,Mohit Saraf,Zahir Abbas,Shaikh M. Mobin
出处
期刊:Nanoscale [Royal Society of Chemistry]
卷期号:15 (33): 13546-13560 被引量:49
标识
DOI:10.1039/d3nr01755a
摘要

MXenes are a large family of two dimensional (2D) materials with high conductivity, redox activity and compositional diversity that have become front-runners in the materials world for a diverse range of energy storage applications. High-performing supercapacitors require electrode materials with high charge storage capabilities, excellent electrical conductivity for fast electron transfer, and the ability of fast charging/discharging with good cyclability. While MXenes show many of these properties, their energy storage capability is limited by a narrow electrochemically stable potential window due to irreversible oxidation under anodic potentials. Although transition metal oxides (TMOs) are often high-capacity materials with high redox activity, their cyclability and poor rate performance are persistent challenges because of their dissolution in aqueous electrolytes and mediocre conductivity. Forming heterostructures of MXenes with TMOs and using hybrid electrodes is a feasible approach to simultaneously increase the charge storage capacity of MXenes and improve the cyclability and rate performance of oxides. MXenes could also act as conductive substrates for the growth of oxides, which could perform as spacers to stop the aggregation of MXene sheets during charging/discharging and help in improving the supercapacitor performance. Moreover, TMOs could increase the interfacial contact between MXene sheets and help in providing short-diffusion ion channels. Hence, MXene/TMO heterostructures are promising for energy storage. This review summarizes the most recent developments in MXene/oxide heterostructures for supercapacitors and highlights the roles of individual components.
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