Authors
Yingchang Yang, Hongshuai Hou, Guoqiang Zou, Wei Shi, Honglei Shuai, Jiayang Li, Xiaobo Ji
Publication date
2019
Source
Nanoscale
Volume
11
Issue
1
Pages
16-33
Publisher
Royal Society of Chemistry
Description
Unlike zero-dimensional quantum dots, one-dimensional nanowires/nanorods, and three-dimensional networks or even their bulk counterparts, the charge carriers in two-dimensional (2D) materials are confined along the thickness while being allowed to move along the plane. They have distinct characteristics like strong quantum confinement, tunable thickness, and high specific surface area, which makes them a promising candidate in a wide range of applications such as electronics, topological spintronic devices, energy storage, energy conversion, sensors, biomedicine, catalysis, and so on. After the discovery of the extraordinary properties of graphene, other graphene-like 2D materials have attracted a great deal of attention. Like graphene, to realize their potential applications, high efficiency and low cost industrial scale methods should be developed to produce high-quality 2D materials. The electrochemical …
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