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Published in 2018 at "Journal of Materials Science: Materials in Electronics"
DOI: 10.1007/s10854-018-0054-5
Abstract: The Mo-doped BiVO4 (m-BiVO4) thin films were deposited onto transparent conducting substrates via a facile metallic organic deposition method. The effect of nominal Mo doping contents on the photoelectrochemical (PEC) performance was investigated. By terms… read more here.
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Published in 2018 at "Science China Materials"
DOI: 10.1007/s40843-017-9172-x
Abstract: Nanocomposites composed of one-dimensional (1D) CdS nanowires (NWs) and 1T-MoS2 nanosheets have been fabricated through a two-step solvothermal process. 5 mol% of MoS2 loading results in the best optical properties, photoelectrochemical (PEC) as well as… read more here.
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Published in 2017 at "Applied Surface Science"
DOI: 10.1016/j.apsusc.2016.07.001
Abstract: Abstract A novel Cu 2 O/TNS composite structure of single crystal TiO 2 nanosheet (TNS) arrays decorated with flake-like Cu 2 O were synthesized by a facile hydrothermal reaction followed by the electrodeposition process. The… read more here.
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Published in 2019 at "Applied Surface Science"
DOI: 10.1016/j.apsusc.2019.05.326
Abstract: Abstract The mixed-phase heterostructured TiO2 nanotree arrays were synthesized by a secondary hydrothermal route, and Ti3+ ions were introduced into the arrays for enhanced photoelectrochemical performance. The results show that the arrays consist of heterostructures… read more here.
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Published in 2018 at "Electrochimica Acta"
DOI: 10.1016/j.electacta.2017.12.049
Abstract: This work was supported by the Ministry of Higher Education and Scientific Research, Tunisia and Ministerio de Economia y Competitividad (ENE2016-77798-C4-2-R) and Generalitat Valenciana (Prometeus 2014/044). read more here.
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Published in 2021 at "International Journal of Hydrogen Energy"
DOI: 10.1016/j.ijhydene.2021.01.142
Abstract: Abstract In this paper we demonstrate the use of atmospheric pressure plasma jet (APPJ) to functionalize the surface of hydrothermally synthesized vertically aligned TiO2 nanorods (TNRs) for photo electrochemical (PEC) application. The TNRs functionalized with… read more here.
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Published in 2017 at "Journal of Alloys and Compounds"
DOI: 10.1016/j.jallcom.2017.02.185
Abstract: Abstract A novel structure of hexagonal CuSbS2 nanobricks were successfully synthesized on the TiO2 nanorod arrays via a solvothermal method by using polyethylene glycol (PEG) as the morphology-directing agent. The photoelectrochemical properties of TiO2/CuSbS2 films… read more here.
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Published in 2019 at "Journal of Alloys and Compounds"
DOI: 10.1016/j.jallcom.2018.09.021
Abstract: Abstract We have tailored a photovoltaic-photoelectrochemical (PV-PEC) cell by integrating p-n Cu2O thin films and ZnO nanorods (NRs) on conductive oxide substrates for water splitting. The combined PV-PEC cell can benefit not only from the… read more here.
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Published in 2020 at "Journal of Alloys and Compounds"
DOI: 10.1016/j.jallcom.2020.155650
Abstract: Abstract We report the nucleation-controlled fabrication of randomly oriented hetero-structure of pristine and hydrogen treated ZnO nanorods decorated with Fe2O3 nanoparticles grown via a simple solution-based deposition process. An ∼18-fold improvement (∼6.8 mA/cm2 at 1.23 VRHE)… read more here.
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Published in 2021 at "Journal of Alloys and Compounds"
DOI: 10.1016/j.jallcom.2021.159545
Abstract: Abstract The nanostructural β-Bi2O3/PbS n-p heterojunction is fabricated using a simple two-step process; electrodeposition of BiOI followed by annealing to form β-Bi2O3 and then PbS deposition by successive ionic layer adsorption and reaction (SILAR) method.… read more here.
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Published in 2020 at "Materials Science in Semiconductor Processing"
DOI: 10.1016/j.mssp.2020.105208
Abstract: Abstract Aluminium doped zinc oxide (AZO) films were achieved using co-spray method. Different techniques including UV–Visible (UV–Vis), X-ray diffraction (XRD), electrochemical impedance spectroscopy (EIS), Fourier transform infrared (FTIR) and photoelectrochemical (PEC) were used to characterize… read more here.