Inorganic Boron-Based Nanostructures: Synthesis, Optoelectronic Properties, and Prospective Applications

材料科学 硼酚 纳米线 纳米结构 纳米技术 硼化物 氧化硼 光电子学 氧化物 石墨烯 化学 冶金 有机化学
作者
Yan Tian,Zekun Guo,Tong Zhang,Haojian Lin,Zijuan Li,Jun Chen,Shaozhi Deng,Liu Fei
出处
期刊:Nanomaterials [Multidisciplinary Digital Publishing Institute]
卷期号:9 (4): 538-538 被引量:51
标识
DOI:10.3390/nano9040538
摘要

Inorganic boron-based nanostructures have great potential for field emission (FE), flexible displays, superconductors, and energy storage because of their high melting point, low density, extreme hardness, and good chemical stability. Until now, most researchers have been focused on one-dimensional (1D) boron-based nanostructures (rare-earth boride (REB6) nanowires, boron nanowires, and nanotubes). Currently, two-dimensional (2D) borophene attracts most of the attention, due to its unique physical and chemical properties, which make it quite different from its corresponding bulk counterpart. Here, we offer a comprehensive review on the synthesis methods and optoelectronics properties of inorganic boron-based nanostructures, which are mainly concentrated on 1D rare-earth boride nanowires, boron monoelement nanowires, and nanotubes, as well as 2D borophene and borophane. This review paper is organized as follows. In Section I, the synthesis methods of inorganic boron-based nanostructures are systematically introduced. In Section II, we classify their optical and electrical transport properties (field emission, optical absorption, and photoconductive properties). In the last section, we evaluate the optoelectronic behaviors of the known inorganic boron-based nanostructures and propose their future applications.
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