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Insights into the DHQ-BN: Mechanical, Electronic, and Optical Properties

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Journal Sci Rep
Specialty Science
Date 2024 Jan 30
PMID 38291070
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Abstract

Computational materials research is vital in improving our understanding of various class of materials and their properties, contributing valuable information that helps predict innovative structures and complement empirical investigations. In this context, DHQ-graphene recently emerged as a stable two-dimensional carbon allotrope composed of decagonal, hexagonal, and quadrilateral carbon rings. Here, we employ density functional theory calculations to investigate the mechanical, electronic, and optical features of its boron nitride counterpart (DHQ-BN). Our findings reveal an insulating band gap of 5.11 eV at the HSE06 level and good structural stability supported by phonon calculations and ab initio molecular dynamics simulations. Moreover, DHQ-BN exhibits strong ultraviolet (UV) activity, suggesting its potential as a highly efficient UV light absorber. Its mechanical properties, including Young's modulus (230 GPa) and Poisson's ratio (0.7), provide insight into its mechanical resilience and structural stability.

Citing Articles

Two-dimensional boron nitride allotrope Irida-BN with 3-6-8 membered rings and wide-bandgap semiconducting properties.

Pereira Jr M, Gomes D, Lima K, Nze G, Mendonca F, Ribeiro Jr L Sci Rep. 2024; 14(1):28892.

PMID: 39572707 PMC: 11582624. DOI: 10.1038/s41598-024-79823-z.

References
1.
Nasir S, Hussein M, Zainal Z, Yusof N . Carbon-Based Nanomaterials/Allotropes: A Glimpse of Their Synthesis, Properties and Some Applications. Materials (Basel). 2018; 11(2). PMC: 5848992. DOI: 10.3390/ma11020295. View

2.
Allen M, Tung V, Kaner R . Honeycomb carbon: a review of graphene. Chem Rev. 2009; 110(1):132-45. DOI: 10.1021/cr900070d. View

3.
Zhao Y, Li X, Liu J, Zhang C, Wang Q . A New Anisotropic Dirac Cone Material: A BS Honeycomb Monolayer. J Phys Chem Lett. 2018; 9(7):1815-1820. DOI: 10.1021/acs.jpclett.8b00616. View

4.
Tran T, Bray K, Ford M, Toth M, Aharonovich I . Quantum emission from hexagonal boron nitride monolayers. Nat Nanotechnol. 2015; 11(1):37-41. DOI: 10.1038/nnano.2015.242. View

5.
Zhang Y, Wang Y, Zhang X, Zhang Y, Du S, Pantelides S . Structure of Amorphous Two-Dimensional Materials: Elemental Monolayer Amorphous Carbon versus Binary Monolayer Amorphous Boron Nitride. Nano Lett. 2022; 22(19):8018-8024. DOI: 10.1021/acs.nanolett.2c02542. View