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Progress, challenges, and opportunities in two-dimensional materials beyond graphene

机译:石墨烯以外的二维材料的进步,挑战和机遇

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摘要

Graphene's success has shown that it is possible to create stable, single and few-atom-thick layers of van der Waals materials, and also that these materials can exhibit fascinating and technologically useful properties. Here we review the state-of-the-art of 2D materials beyond graphene. Initially, we will outline the different chemical classes of 2D materials and discuss the various strategies to prepare single-layer, few-layer, and multilayer assembly materials in solution, on substrates, and on the wafer scale. Additionally, we present an experimental guide for identifying and characterizing single-layer-thick materials, as well as outlining emerging techniques that yield both local and global information. We describe the differences that occur in the electronic structure between the bulk and the single layer and discuss various methods of tuning their electronic properties by manipulating the surface. Finally, we highlight the properties and advantages of single-, few-, and many-layer 2D materials in field-effect transistors, spin-and valley-tronics, thermoelectrics, and topological insulators, among many other applications.
机译:石墨烯的成功表明,可以制造出稳定,单一且原子层厚度很少的范德华层材料,并且这些材料还可以展现出引人入胜的技术实用性。在这里,我们回顾了石墨烯以外的2D材料的最新技术。最初,我们将概述2D材料的不同化学类别,并讨论在溶液,基板和晶圆级制备单层,少层和多层装配材料的各种策略。此外,我们提供了用于识别和表征单层厚材料的实验指南,并概述了产生本地和全局信息的新兴技术。我们描述了在本体和单层之间的电子结构中发生的差异,并讨论了通过操纵表面来调整其电子特性的各种方法。最后,我们重点介绍了单层,多层和多层2D材料在场效应晶体管,自旋和波谷电子,热电和拓扑绝缘体等众多应用中的特性和优势。

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