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Synthesis and optoelectronic applications of graphene/transition metal dichalcogenides flat-pack assembly

机译:石墨烯/过渡金属二色元晶体扁平包装组件的合成与光电应用

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摘要

Being a representative candidate from the two-dimensional (2D) materials family, graphene has been one of the most intensively researched candidates because of its ultrahigh carrier mobility, quantum Hall effects, excellent mechanical property and high optical transmittance. Unfortunately, the lack of a band gap makes graphene a poor fit for digital electronics, where the current on/off ratio is critical. Huge efforts have been advocated to discover new 2D layered materials with wonderful properties, which complements the needs of 2D electronics. Appropriately designed graphene based hybrid structure could perform better than its counterpart alone. The graphene hybrid structure soon become one of the most exciting frontiers in advanced 2D materials, and many efforts have been made to create artificial heterostructures by assembling of graphene with various layered materials. In this review, we present the recent development in synthesis and applications of graphene based 2D heterostructures. Although 2D transition metal dichalcogenide semiconductors have been demonstrated as strong candidates for next-generation electronics and optoelectronics, by combining advantages of various properties of 2D materials together with graphene, it is highly possible to build entire digital circuits using atomically thin components, and create many novel devices that can be utilized in different areas.
机译:作为二维(2D)材料家族的代表性候选者,石墨烯已成为最集中研究的候选者之一,因为其超高载流动性,量子霍尔效应,优异的机械性能和高光学透射率。不幸的是,缺乏带隙使得石墨烯是数字电子产品的差,其中电流开/关比至关重要。已经提倡巨大的努力发现具有精彩的特性的新型2D分层材料,这补充了2D电子产品的需求。适当设计的石墨烯的混合结构可以比单独的对应物更好。石墨烯混合结构很快成为先进的2D材料中最令人兴奋的前沿之一,并且已经通过用各种层状材料组装石墨烯来创造人工异性结构。在本综述中,我们介绍了基于石墨烯的2D异质结构的合成和应用的最新发展。尽管通过将2D材料的各种性能的优点与石墨烯相结合,但是已经证明了2D过渡金属二均甲基半导体半导体作为下一代电子和光电子的强烈候选者,尽管通过Graphene各种性能的优点,但是非常可能使用原子薄部件构建整个数字电路,并产生许多可以在不同区域使用的新设备。

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