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The potentials of Si-doped magnesium oxide nanotubes for decontamination of pollutants

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dc.contributor.author Itas, Yahaya Saadu
dc.contributor.author Danmadami, Amina Mohammad
dc.contributor.author Razali, Razif
dc.contributor.author Khandaker, Mayeen Uddin
dc.date.accessioned 2024-06-29T09:46:19Z
dc.date.available 2024-06-29T09:46:19Z
dc.date.issued 2023-11
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/12808
dc.description.abstract This work investigated the potential of the silicon-doped magnesium oxide nanotubes (Si: MgONT) to serve as a photocatalyst for the treatment of pollutants. The analysis of the photocatalytic properties of the Si: MgONT was carried out based on considering structural, electronic and optical properties at Si concentrations of 3.12% and 6.25%, respectively. We performed ground state analysis and ionic interactions using density functional theory (DFT) via quantum ESPRESSO and Yambo codes. The results of structural property analysis showed that pristine single-walled magnesium oxide nanotubes (SWMgONT) were stable to the introduction of Si impurities at a concentration of up to 6.25%. The highest binding energy value of −288.66 eV for 3.12% Si-doped SWMgONT showed that photons can be bound more strongly in this system than for 6.25% Si-doped and pure SWMgONT. 3.12% Si-doped SWMgONT exhibited indirect band gaps of 2.36 eV, which is well above the standard overpotential for pollutant degradation, while 6.25% SWMgONT had no bandgap. Analysis of the optical absorption spectra showed that 3.12% SWMgONT absorbs light very well in the visible region and reflects it in the IR region, while pristine and 6.25% MgONT showed poor light absorption in the visible region. On this basis, this work recommended 3.12% Si-doped SWMgONT semiconductor as a better material for dye degradation, CO2 reduction and hydrogen evolution. en_US
dc.language.iso en_US en_US
dc.publisher Daffodil International University en_US
dc.subject magnesium en_US
dc.subject photocatalyst en_US
dc.subject pollutants en_US
dc.subject ESPRESSO en_US
dc.subject overpotential en_US
dc.title The potentials of Si-doped magnesium oxide nanotubes for decontamination of pollutants en_US
dc.type Article en_US


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