Tian Yan, Guo Zekun, Zhang Tong, Lin Haojian, Li Zijuan, Chen Jun, Deng Shaozhi, Liu Fei
State Key Laboratory of Optoelectronic Materials and Technologies, Guangdong Province Key Laboratory of Display Material and Technology, School of Electronics and Information Technology, Sun Yat-sen University, Guangzhou 510275, China.
Nanomaterials (Basel). 2019 Apr 3;9(4):538. doi: 10.3390/nano9040538.
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.
无机硼基纳米结构因其高熔点、低密度、极高硬度和良好的化学稳定性,在场发射(FE)、柔性显示器、超导体和能量存储方面具有巨大潜力。到目前为止,大多数研究人员一直专注于一维(1D)硼基纳米结构(稀土硼化物(REB₆)纳米线、硼纳米线和纳米管)。目前,二维(2D)硼烯因其独特的物理和化学性质而备受关注,这使其与相应的块状材料有很大不同。在此,我们对无机硼基纳米结构的合成方法和光电性质进行全面综述,主要集中在一维稀土硼化物纳米线、硼单元素纳米线和纳米管,以及二维硼烯和硼烷。本文综述如下。在第一节中,系统介绍了无机硼基纳米结构的合成方法。在第二节中,我们对它们的光学和电输运性质(场发射、光吸收和光电导性质)进行分类。在最后一节中,我们评估了已知无机硼基纳米结构的光电行为,并提出它们未来的应用。