From fundamental to CO2 and COCl2 gas sensing properties of pristine and defective Si2BN monolayers

dc.contributor.authorThomas, S.
dc.contributor.authorMadam, A.K.
dc.contributor.authorAsle Zaeem, M.
dc.date.accessioned2026-02-04T12:28:16Z
dc.date.issued2022
dc.description.abstractIn this work, the capability of Si<inf>2</inf>BN monolayers (Si<inf>2</inf>BN-MLs) to sense CO<inf>2</inf> and COCl<inf>2</inf> molecules was investigated by analyzing the structural, electronic, mechanical and gas sensing properties of defect-free and defective Si<inf>2</inf>BN-ML structures. Electronic property analysis revealed that the Si<inf>2</inf>BN-ML retains its metallicity in the presence of vacancy defects. The computed vacancy formation energies of Si, B and N monovacancies are 3.25 eV, 2.27 eV and 2.55 eV, respectively, which indicate that the B monovacancy is thermodynamically more feasible. Besides, both pristine and defective Si<inf>2</inf>BN-ML structures show good mechanical stability. To validate the gas sensing properties, the adsorption energy and charge transfer were analysed, showing that both pristine and defective Si<inf>2</inf>BN-ML structures receive considerable charges from the CO<inf>2</inf> and COCl<inf>2</inf> molecules via a stable physisorption process. The work function analysis revealed that a minute increase <0.10 eV is responsible for the enhanced selectivity and sensitivity of Si<inf>2</inf>BN-ML structures in detecting CO<inf>2</inf> and COCl<inf>2</inf> molecules. The low adsorption energies of both CO<inf>2</inf> and COCl<inf>2</inf> gas molecules during the interaction with Si<inf>2</inf>BN-ML structures signify the possibility of a large number of adsorption-desorption cycles with an ultra-low recovery time, 0.174 ns for CO<inf>2</inf> and 0.016 ns for COCl<inf>2</inf>, suitable for efficient gas sensing applications. © the Owner Societies.
dc.identifier.citationPhysical Chemistry Chemical Physics, 2022, 24, 7, pp. 4394-4406
dc.identifier.issn14639076
dc.identifier.urihttps://doi.org/10.1039/d1cp05590a
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/22676
dc.publisherRoyal Society of Chemistry
dc.subjectCarbon dioxide
dc.subjectCharge transfer
dc.subjectChemical detection
dc.subjectChlorine compounds
dc.subjectDefects
dc.subjectElectronic properties
dc.subjectGas detectors
dc.subjectGases
dc.subjectMechanical stability
dc.subjectMolecules
dc.subjectMonolayers
dc.subjectPhysisorption
dc.subjectAdsorption energies
dc.subjectDefect-free
dc.subjectElectronic sensing
dc.subjectGas sensing properties
dc.subjectMechanical sensing
dc.subjectMetallicities
dc.subjectMonovacancies
dc.subjectProperty analysis
dc.subjectStructural sensing
dc.subjectVacancy Defects
dc.subjectSilicon compounds
dc.titleFrom fundamental to CO2 and COCl2 gas sensing properties of pristine and defective Si2BN monolayers

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