Guan Lixiu, Chen Guifeng, Tao Junguang
School of Science, Hebei University of Technology, Tianjin 300130, China.
Key Lab. for New Type of Functional Materials in Hebei Province, School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300130, China.
Phys Chem Chem Phys. 2016 Jun 1;18(22):15177-81. doi: 10.1039/c6cp01803c.
Due to its high carrier mobility and tunable bandgap, phosphorene has been the subject of immense interest recently. Herein, we show using density functional theory based calculations that black phosphorus (BP) nanotubes are achievable. Moreover, the electronic properties of BP nanotubes are explored. In contrast to their monolayer and bulk counterparts, most BP nanotubes possess indirect band gaps. In addition, strong anisotropic electronic behaviors are observed between zigzag and armchair nanotubes. Semiconducting to semi-metallic transition occurs only for zigzag tubes when its diameter shrinks to ∼1.5 nm. This difference is strongly related to the bond bending after the formation of the nanotubes which governs the s-p hybridization, as well as electron distribution in different p orbitals and this eventually determines the electronic structure of BP nanotubes.
由于其高载流子迁移率和可调节的带隙,磷烯最近受到了极大的关注。在此,我们通过基于密度泛函理论的计算表明,黑磷(BP)纳米管是可以实现的。此外,还对BP纳米管的电子性质进行了探索。与它们的单层和体相材料不同,大多数BP纳米管具有间接带隙。此外,在锯齿形和扶手椅形纳米管之间观察到强烈的各向异性电子行为。只有当锯齿形纳米管的直径缩小到约1.5纳米时,才会发生从半导体到半金属的转变。这种差异与纳米管形成后的键弯曲密切相关,键弯曲控制着s-p杂化以及不同p轨道中的电子分布,最终决定了BP纳米管的电子结构。