Issue 18, 2016

Chiral phosphorus nanotubes: structure, bonding, and electronic properties

Abstract

The study of black phosphorus nanotubes (PNTs) had been devoted to zigzag and armchair structures, with no consideration of chiral structures to date. In this communication, we studied the structural and electronic (band structure) properties of chiral nanotubes using a periodic plane wave-pseudopotential approach. We found that some chiral nanotubes display similar bandgaps and binding energies per atom (BEA) as armchair PNTs and Born–Oppenheimer molecular dynamics (BOMD) calculations attest their thermal stability. Interestingly, we determined that the bandgap is tuned by varying the PNTs chirality and it is not related to their diameters. This feature can be exploited in optical and electronic applications wherein a direct and sizable bandgap is required.

Graphical abstract: Chiral phosphorus nanotubes: structure, bonding, and electronic properties

Supplementary files

Article information

Article type
Communication
Submitted
20 Mar 2016
Accepted
05 Apr 2016
First published
05 Apr 2016

Phys. Chem. Chem. Phys., 2016,18, 12414-12418

Chiral phosphorus nanotubes: structure, bonding, and electronic properties

H. N. Fernández-Escamilla, J. J. Quijano-Briones and A. Tlahuice-Flores, Phys. Chem. Chem. Phys., 2016, 18, 12414 DOI: 10.1039/C6CP01869F

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