Application Scopes of Miniaturized MXene‐Functionalized Electrospun Nanofibers‐Based Electrochemical Energy Devices

材料科学 超级电容器 纳米技术 电化学 纳米纤维 静电纺丝 电化学储能 复合材料 电极 聚合物 物理化学 化学
作者
Sanaz Khademolqorani,Seyedeh Nooshin Banitaba,Ashish Gupta,Nazanin Poursharifi,Ali Ghaffari,Vijaykumar V. Jadhav,Waqas Ul Arifeen,Mandeep Singh,Munu Borah,Elham Chamanehpour,Yogendra Kumar Mishra
出处
期刊:Small [Wiley]
卷期号:20 (24): e2309572-e2309572 被引量:24
标识
DOI:10.1002/smll.202309572
摘要

Abstract Exploring combinatorial materials, as well as rational device configuration design, are assumed to be the key strategies for deploying versatile electrochemical devices. MXene sheets have revealed a high hydrophilic surface with proper mechanical and electrical characteristics, rendering them supreme additive candidates to integrate in electrospun electrochemical power tools. The synergetic effects of MXene 2D layers with the nanofibrous networks can boost actuator responsive ability, battery capacity retention, fuel cell stability, sensor sensitivity, and supercapacitor areal capacitance. Their superior mechanical features can be endowed to the electrospun layers through the embedding of the MXene additive. In this review, the preparation and inherent features of the MXene configurations are briefly evaluated. The fabrication and overall performance of the MXene‐loaded nanofibers applicable in electrochemical actuators, batteries, fuel cells, sensors, and supercapacitors are comprehensively figured out. Eventually, an outlook on the future development of MXene‐based electrospun composites is presented. A substantial focus has been devoted to date to engineering conjugated MXene and electrospun fibrous frames. The potential performance of the MXene‐decorated nanofibers presents a bright future of nanoengineering toward technological growth. Meanwhile, a balance between the pros and cons of the synthesized MXene composite layers is worthwhile to consider in the future.
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