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MXenes for Non-Lithium-Ion (Na, K, Ca, Mg, and Al) Batteries and Supercapacitors

机译:用于非锂离子(Na,K,Ca,Mg和Al)电池和超级电容器的mxenes

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摘要

The 2019 Nobel Prize in Chemistry for lithium-ion batteries is a powerful confirmation of the importance of portable energy storage devices, which will further promote collaborative innovation in the field of new energy storage. Non-lithium rechargeable energy storage technologies are attracting attention due to their low cost and high energy densities. However, electrochemical performance depends upon the inherent properties of the electrodes. In recent decades, 2D materials have been extensively investigated owing to their unique physical and chemical properties. One of the typical representatives is the MXenes with good electrochemical properties, which have become popular material in the field of energy storage in recent years. The discovery of MXene with metal solution, expanded interlayer-spacing and tamperable surface termination offers a valuable strategy to discover MXenes with new structures. These flexible properties of MXene allow the tuning of properties for energy storage technologies. Here, the synthesis, structure, properties and applications of MXenes in non-lithium energy storage technologies are reviewed, and a comprehensive outlook and personal perspective on the future development of MXene in the energy storage system are also presented.
机译:2019年诺贝尔锂离子电池化学奖是一种强大的便携式能量存储设备的重要性,这将进一步促进新能源存储领域的协作创新。由于其低成本和高能量密度,非锂电可充电能量存储技术引起了注意力。然而,电化学性能取决于电极的固有特性。近几十年来,由于其独特的物理和化学性质,2D材料被广泛调查。其中一个典型的代表是具有良好电化学性质的MxENE,近年来已成为储能领域的流行材料。使用金属溶液的MXENE发现,膨胀层间 - 间距和耐药表面终端提供了一种有价值的策略来发现具有新结构的MXENES。这些MXENE的灵活性能允许调整能量存储技术的性能。这里,综述了MxENES在非锂能储存技术中的合成,结构,性质和应用,并且还提出了对储能系统中MXENE未来发展的综合前景和个人观点。

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