Phase-Separated Amorphous Si2BN: A Computational Study
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Date
2025
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
AIP Publishing
Open Access Color
HYBRID
Green Open Access
Yes
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OpenAIRE Views
Publicly Funded
No
Abstract
This study investigates the atomic structure, bonding, and electrical and mechanical properties of amorphous silicon boron nitride (a-Si2BN) using ab initio molecular dynamics simulations. The simulations reveal a distinct phase-separated structure comprising Si-rich and BN-rich domains. BN layers are embedded within the amorphous Si matrix, with only a few bridging atoms linking these regions. The Si-rich region exhibits topological similarities to amorphous silicon, albeit with notable structural distortions. Electronic structure calculations indicate semiconducting behavior with a small bandgap, while mechanical property analysis shows a moderate bulk modulus and Young's modulus, achieving a balance between rigidity and elasticity. These findings position a-Si2BN as a promising material for advanced applications, including flexible electronics, high-temperature semiconductors, and energy storage devices. While the proposed structure is currently hypothetical, its potential experimental realization could open new avenues in material design for emerging technologies.
Description
Keywords
HOMO and LUMO, Electronic structure methods, Ceramic materials, Mechanical properties, Molecular dynamics, Optoelectronics, Bulk modulus, Poisson's ratio, 2D materials, Elastic modulus
Fields of Science
Citation
WoS Q
Q3
Scopus Q
Q2

OpenCitations Citation Count
N/A
Source
Journal of Applied Physics
Volume
137
Issue
6
Start Page
End Page
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Citations
Scopus : 1
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