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准一维范德华过渡金属三硫属化物

Quasi-One-Dimensional van der Waals Transition Metal Trichalcogenides.

作者信息

Chen Mengdi, Li Lei, Xu Manzhang, Li Weiwei, Zheng Lu, Wang Xuewen

机构信息

Frontiers Science Center for Flexible Electronics (FSCFE) & Shaanxi Institute of Flexible Electronics (SIFE), Northwestern Polytechnical University (NPU), 127 West Youyi Road, Xi'an 710072, China.

Shaanxi Key Laboratory of Flexible Electronics (KLoFE), Northwestern Polytechnical University (NPU), 127 West Youyi Road, Xi'an 710072, China.

出版信息

Research (Wash D C). 2023;6:0066. doi: 10.34133/research.0066. Epub 2023 Mar 14.

Abstract

The transition metal trichalcogenides (TMTCs) are quasi-one-dimensional (1D) MX3-type van der Waals layered semiconductors, where M is a transition metal element of groups IV and V, and X indicates chalcogen element. Due to the unique quasi-1D crystalline structures, they possess several novel electrical properties such as variable bandgaps, charge density waves, and superconductivity, and highly anisotropic optical, thermoelectric, and magnetic properties. The study of TMTCs plays an essential role in the 1D quantum materials field, enabling new opportunities in the material research dimension. Currently, tremendous progress in both materials and solid-state devices has been made, demonstrating promising applications in the realization of nanoelectronic devices. This review provides a comprehensive overview to survey the state of the art in materials, devices, and applications based on TMTCs. Firstly, the symbolic structure, current primary synthesis methods, and physical properties of TMTCs have been discussed. Secondly, examples of TMTC applications in various fields are presented, such as photodetectors, energy storage devices, catalysts, and sensors. Finally, we give an overview of the opportunities and future perspectives for the research of TMTCs, as well as the challenges in both basic research and practical applications.

摘要

过渡金属三硫属化物(TMTCs)是准一维(1D)MX3型范德华层状半导体,其中M是IV族和V族的过渡金属元素,X表示硫属元素。由于其独特的准一维晶体结构,它们具有多种新颖的电学性质,如可变带隙、电荷密度波和超导性,以及高度各向异性的光学、热电和磁学性质。TMTCs的研究在一维量子材料领域起着至关重要的作用,为材料研究维度带来了新的机遇。目前,在材料和固态器件方面都取得了巨大进展,展示了在实现纳米电子器件方面的广阔应用前景。本综述全面概述了基于TMTCs的材料、器件和应用的现状。首先,讨论了TMTCs的标志性结构、当前主要的合成方法和物理性质。其次,介绍了TMTCs在各个领域的应用实例,如光电探测器、储能器件、催化剂和传感器。最后,我们概述了TMTCs研究的机遇和未来前景,以及基础研究和实际应用中面临的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98f4/10013805/4efe4e572e57/research.0066.fig.001.jpg

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