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Recent progress on transition metal diselenides from formation and modification to applications

机译:最近的进展过渡金属联硒化物从形成和修改应用程序

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The development of graphene promotes the research of similar two-dimensional (2D) materials, especially 2D transition metal dichalcogenides (TMDCs) with semiconductor properties. Monolayer or few-layer TMDCs have several advantages, such as direct band gap, weak interlayer van der Waals force, large interlayer spacing, and abundant marginal active sites, which make them widely used in catalysis, optoelectronics, as well as energy conversion and storage devices. In addition, transition metal diselenides (TMDSs) also possess many intriguing characteristics. For instance, transition metal diselenides (e.g., MoSe2) have a more stable 1T phase, larger interlayer spacing, smaller band gap, and more obvious metallic property of Se than TMDCs (e.g., MoS2). Thus, it has become one of the most attractive research topics branching out from TMDCs. Herein, this review unveils the structures, synthesis, properties, modifications, applications, and perspectives for TMDSs.
机译:石墨烯的发展促进了研究类似的二维(2 d)材料,特别是2 d过渡金属dichalcogenides(TMDCs)和半导体性质。或few-layer TMDCs有几个优势,这样的直接带隙,层间范德华疲软力,大层间间距和丰富边际活跃的网站,这让他们广泛用于催化、光电子学以及能量转换和存储设备。此外,过渡金属联硒化物(TMDSs)还拥有许多有趣的特征。例如,过渡金属联硒化物(如MoSe2)有一个更稳定的1 t阶段,大层间间距,小的带隙,等等明显比TMDCs Se的金属属性(例如,二硫化钼)。有吸引力的分支从研究主题TMDCs。结构、合成、性能、修改,应用程序和TMDSs视角。

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