The metallic nature of two-dimensional transition-metal dichalcogenides and MXenes

IF 8.2 1区 化学 Q1 CHEMISTRY, PHYSICAL
Wenshuo Xu , Yuxuan Ke , Zhuo Wang , Wenjing Zhang , Andrew Thye Shen Wee
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引用次数: 10

Abstract

Metallic two-dimensional (2D) materials such as transition-metal dichalcogenides (TMDCs) and MXenes exhibit intriguing properties, including superconductivity, magnetism and electrocatalysis. Studies on the correlation between their nanoscale structures and properties can facilitate the development of photodetectors, supercapacitors, nanocatalysts, etc., but this topic has not been reviewed systematically. Here, we provide a comprehensive overview on the key factors that dictate the structures and properties of these 2D metals. We examine their phase transitions induced by structural or electronic modifications based on microscopic imaging, spectral characterization, and electrical measurements. From the perspective of surface and interface engineering, we elucidate the influences of lattice defects, dopants, and intercalated species between adjacent layers. Moreover, heterostructures involving highly conductive 2D component(s) are discussed, which may enable the observation of fascinating phenomena and/or synergistic effects due to the interlayer interactions. Finally, we provide insights into opportunities for new applications, e.g., radio-frequency antennas and electromagnetic interference shields. Feasible routes are also proposed to overcome the current challenges.

二维过渡金属二硫族化合物和MXenes的金属性质
金属二维(2D)材料,如过渡金属二硫族化合物(TMDCs)和MXenes,表现出有趣的特性,包括超导性、磁性和电催化。研究它们的纳米级结构和性能之间的相关性有助于光电探测器、超级电容器、纳米催化剂等的发展,但这一主题尚未得到系统的综述。在这里,我们对决定这些二维金属的结构和性质的关键因素进行了全面的概述。我们研究了基于显微成像、光谱表征和电测量的结构或电子修饰引起的相变。从表面和界面工程的角度,阐述了相邻层间晶格缺陷、掺杂物和插层物质的影响。此外,还讨论了涉及高导电性二维组分的异质结构,这可能使观察到有趣的现象和/或由于层间相互作用而产生的协同效应成为可能。最后,我们提供了对新应用机会的见解,例如射频天线和电磁干扰屏蔽。为克服当前的挑战,提出了可行的路线。
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来源期刊
Surface Science Reports
Surface Science Reports 化学-物理:凝聚态物理
CiteScore
15.90
自引率
2.00%
发文量
9
审稿时长
178 days
期刊介绍: Surface Science Reports is a journal that specializes in invited review papers on experimental and theoretical studies in the physics, chemistry, and pioneering applications of surfaces, interfaces, and nanostructures. The topics covered in the journal aim to contribute to a better understanding of the fundamental phenomena that occur on surfaces and interfaces, as well as the application of this knowledge to the development of materials, processes, and devices. In this journal, the term "surfaces" encompasses all interfaces between solids, liquids, polymers, biomaterials, nanostructures, soft matter, gases, and vacuum. Additionally, the journal includes reviews of experimental techniques and methods used to characterize surfaces and surface processes, such as those based on the interactions of photons, electrons, and ions with surfaces.
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