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First-principles study of Hematite (α-Fe2O3) surface structures doped with Copper (Cu), Titanium (Ti), nickel (Ni) and manganese (Mn)

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dc.contributor.advisor Maluta, N. E.
dc.contributor.advisor Maphanga, R. R.
dc.contributor.author Mabaso, Clarence Vusi
dc.date 2022
dc.date.accessioned 2023-05-29T10:12:31Z
dc.date.available 2023-05-29T10:12:31Z
dc.date.issued 2023-05-19
dc.identifier.citation Mabaso, C. V. (2022) First-principles study of Hematite (α-Fe2O3) surface structures doped with Copper (Cu), Titanium (Ti), nickel (Ni) and manganese (Mn). University of Venda. South Africa.<http://hdl.handle.net/11602/2479>.
dc.identifier.uri http://hdl.handle.net/11602/2479
dc.description MSc (Physics) en_ZA
dc.description Department of Physics
dc.description.abstract Hematite has attracted research interest for many years due to its application in water splitting. Despite its attractive characters such as a reasonable optical band gap, the semiconductor is still faced with great uncertainty for the accomplishment of hematite based photoelectrochemical cells for water splitting. Doping with transition metals has shown to be a practical solution to overcome some of the limitations faced with hematite by modifying the energy band to improve its photo-electrochemical (PEC) activity. This study explored two surface structures of pure and transition metals (Ti, Cu, Ni and Mn) doped- α-Fe2O3 oriented in the directions (001) and (101). Calculations via the first principle using the density functional theory (DFT) were adopted, the results show that the doping of transition metals in α-Fe2O3 has an effect in modifying both the valence and conduction band edges. Specifically, doping Ti introduces more electrons in the conduction band and fills the unoccupied 3d states, which could improve the rate of charge transportation and likely enhance the electrical conductivity of α-Fe2O3. Doping with Mn, Ni, and Cu has effectively improved the absorption coefficient for α-Fe2O3 (001) and (101) surfaces, in the visible light region. The overall analysis of the results shows an opportunity for a successful photo-electrochemical water splitting application. en_ZA
dc.description.sponsorship NRF en_ZA
dc.format.extent 1 online resource(ix, 83 leaves): color illustrations
dc.language.iso en en_ZA
dc.rights University of Venda
dc.subject Hematite en_ZA
dc.subject Density functional theory en_ZA
dc.subject Transition metals en_ZA
dc.subject Band gap en_ZA
dc.subject Surface structures en_ZA
dc.subject.ddc 549.523
dc.subject.lcsh Iron ores
dc.subject.lcsh Hematite
dc.subject.lcsh Oxide minerals
dc.subject.lcsh Corundum
dc.title First-principles study of Hematite (α-Fe2O3) surface structures doped with Copper (Cu), Titanium (Ti), nickel (Ni) and manganese (Mn) en_ZA
dc.type Dissertation en_ZA


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