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Two-dimensional van der Waals heterojunctions for functional materials and devices

机译:用于功能材料和器件的二维范德瓦尔斯异质功能

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Two-dimensional (2D) materials, such as graphene, phosphorene, graphitic carbon nitride (g-C3N4), graphitic zinc oxide (g-ZnO) and transition metal dichalcogenides (TMDs, e.g., MoS2), have already attracted extensive attention due to their outstanding properties and wide range of applications in electronic and optoelectronic devices. In particular, 2D van der Waals heterojunctions combining the electronic structures of such 2D materials have also been predicted theoretically and synthesized experimentally to expect more new properties (e.g., bandgap opening in graphene, semiconductor band alignment, charge transfer and new optical absorption) and potential applications (e.g., solar cells, field-effect transistors (FFTs), PN junctions, PN diodes and photodetectors) far beyond corresponding 2D materials. This review focuses on recent theoretical works about 2D van der Waals heterojunctions especially for functional materials and devices such as photovoltaic solar cells (phosphorene/MoS2 and edge-modified phosphorene nanoflake based heterojunctions), Schottky and Ohmic contacts (graphene/MoS2 based heterojunctions), PN junctions (graphene/g-ZnO based heterojunctions) and supercapacitors (graphene/h-BN based heterojunctions). These theoretical simulations and designs of 2D van der Waals heterojunctions provide a promising direction for high-performance electronic and optoelectronic devices in experiments.
机译:如石墨烯,磷烯,石墨碳氮化物(G-C3N4),石墨锌(G-ZnO)和过渡金属二甲基甲基(TMD,例如MOS2)的二维(2D)材料已经引起了广泛的关注它们出色的特性和电子和光电器件的各种应用。特别地,在理论上也预测了组合这种2D材料的电子结构的2D范德瓦尔斯杂交,并通过实验地进行了实验地合成以期望更多的新特性(例如,石墨烯中的带隙开口,半导体带对准,电荷转移和新的光学吸收)和电位远远超出相应的2D材料的应用(例如,太阳能电池,场效应晶体管(FFT),PN结,PN二极管和光电探测器)。本综述侧重于近2D范德瓦尔斯的理论作品,尤其是用于电压太阳能电池(磷烯/ MOS2和边缘改性磷烯纳米酚的杂蚀剂),肖特基和欧姆触点(基于石墨烯/ MOS2的异质结)的功能材料和装置,特别关注PN结(石墨烯/ G-ZnO的异质官能)和超级电容器(基于石墨烯/ H-BN的异质官能)。这些理论模拟和2D范德瓦尔斯的杂交功能为高性能电子和光电器件提供了有希望的方向。

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