A new highly stable multifunctional two-dimensional SiBN monolayer quantum material with a direct bandgap predicted by density functional theory.

Phys Chem Chem Phys

Department of Chemistry, Department of Physics and Astronomy, CMS - Center for Molecular Simulation, IQST - Institute for Quantum Science and Technology, Quantum Alberta, University of Calgary, 2500 University Drive NW, Calgary, Alberta, Canada, T2N 1N4.

Published: July 2024

AI Article Synopsis

  • A new two-dimensional (2D) SiBN structure, called 2D δ-SiBN, was predicted using density functional theory, showing lower energy and unique double quasi-planar layers compared to previous SiBN nanosheets.
  • The material is a semiconductor with a direct band gap of 1.24 eV and exhibits excellent light absorption in the visible region, suggesting potential for photovoltaic applications with a theoretical efficiency of 27.6%.
  • Additionally, the 2D δ-SiBN monolayer demonstrates significant ferroelectric properties, with a spontaneous out-of-plane electric polarization that is six times greater than similar materials, making it a strong candidate for future information storage and electronic devices.

Article Abstract

In this work, we present a novel two-dimensional (2D) SiBN structure (2D δ-SiBN) predicted using density functional theory (DFT). The proposed structure exhibits a unique double quasi-planar layer interconnected by covalent bonds, demonstrating lower energy compared to the previously reported planar SiBN nanosheet. Our calculations, conducted at the HSE06 level of theory, reveal its semiconductor nature with a direct band gap of 1.24 eV at the gamma point. The 2D material exhibits exceptional light absorption in the visible region, prompting an exploration of its potential in photovoltaic applications. Remarkably, our findings indicate a maximum theoretical efficiency of 27.6%, underscoring its promise for renewable energy technologies. Furthermore, employing modern polarization theory, we unveil the ferroelectric properties of the SiBN monolayer. Notably, a large out-of-plane polarization is observed. It was found that the unstrained 2D δ-SiBN monolayer demonstrates an impressive out-of-plane spontaneous electric polarization of 28.98 × 10 C m, a value six times greater than previously referenced Janus materials. This remarkable enhancement in ferroelectric capabilities positions the SiBN monolayer as a promising candidate for applications in next generation novel information storage, nano-electronic, and optoelectronic devices. These findings not only contribute to the understanding of the structural and electronic properties of the 2D δ-SiBN monolayer but also highlight its potential for various technological applications, marking a significant advancement in the field of nanomaterials.

Download full-text PDF

Source
http://dx.doi.org/10.1039/d4cp01445fDOI Listing

Publication Analysis

Top Keywords

sibn monolayer
12
two-dimensional sibn
8
predicted density
8
density functional
8
functional theory
8
δ-sibn monolayer
8
sibn
5
monolayer
5
highly stable
4
stable multifunctional
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!