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Visible Light Hydrogen Evolution over <i>α</i>-MoO</span><sub><span style="font-family:Verdana;">3</span></sub><span style="font-family:Verdana;">and <i>α</i>-MoO</span><sub><span style="font-family:Verdana;">3</span></sub><span style="font-family:Verdana;">/ZnO Hetero-Junction

Visible Light Hydrogen Evolution over <i>α</i>-MoO</span><sub><span style="font-family:Verdana;">3</span></sub><span style="font-family:Verdana;">and <i>α</i>-MoO</span><sub><span style="font-family:Verdana;">3</span></sub><span style="font-family:Verdana;">/ZnO Hetero-Junction
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摘要 MoO<sub>3</sub> and 5% MoO<sub>3</sub>/ZnO were prepared by impregnation method using (NH<sub>4</sub>)<sub>6</sub>Mo<sub>7</sub>O<sub>24</sub>, 4H<sub>2</sub>O as precursor and ZnO as support. The prepared samples were characterized by X-ray diffraction (XRD), scanning electronic microscopy (SEM), infra red (FTIR) <span style="font-family:;" "="">and</span><span style="font-family:;" "=""> UV-Vis diffuse reflectance (DRS)</span><span> </span><span style="font-family:;" "="">spectroscopies and pho<span>to-electrochemistry. The XRD pattern showed that the MoO<sub>3</sub> powder treated at 700&deg;C is a single-phase crystallizing in an orthorhombic structure with a direct optical transition </span></span><span style="font-family:;" "="">(</span><span style="font-family:;" "="">2.70 eV</span><span style="font-family:;" "="">)</span><span style="font-family:;" "="">. The hetero-junction 5% MoO<sub>3</sub>/ZnO</span><span style="font-family:;" "=""> was photo-electrochemically characterized to assess its feasibility for H<sub>2</sub> production under visible light. The capacitance potential (<i>C<sup>-</sup></i><sup>2</sup><i> f</i>(<i>E</i>)) characteristic of MoO<sub>3</sub> plotted in Na<sub>2</sub>SO<sub>4</sub>, (0.1 M) electrolyte indicates <i>n-</i>type conduction with a flat band potential of -</span><span style="font-family:;" "=""><span>0.54 V<i><sub>SCE</sub></i>. The photocatalytic activity was performed for the photoreduction of water to hydrogen under visible light illumination. The best performance occurs at pH ~ 7 with an evolved volume of 5.9 mL.</span></span> MoO<sub>3</sub> and 5% MoO<sub>3</sub>/ZnO were prepared by impregnation method using (NH<sub>4</sub>)<sub>6</sub>Mo<sub>7</sub>O<sub>24</sub>, 4H<sub>2</sub>O as precursor and ZnO as support. The prepared samples were characterized by X-ray diffraction (XRD), scanning electronic microscopy (SEM), infra red (FTIR) <span style="font-family:;" "="">and</span><span style="font-family:;" "=""> UV-Vis diffuse reflectance (DRS)</span><span> </span><span style="font-family:;" "="">spectroscopies and pho<span>to-electrochemistry. The XRD pattern showed that the MoO<sub>3</sub> powder treated at 700&deg;C is a single-phase crystallizing in an orthorhombic structure with a direct optical transition </span></span><span style="font-family:;" "="">(</span><span style="font-family:;" "="">2.70 eV</span><span style="font-family:;" "="">)</span><span style="font-family:;" "="">. The hetero-junction 5% MoO<sub>3</sub>/ZnO</span><span style="font-family:;" "=""> was photo-electrochemically characterized to assess its feasibility for H<sub>2</sub> production under visible light. The capacitance potential (<i>C<sup>-</sup></i><sup>2</sup><i> f</i>(<i>E</i>)) characteristic of MoO<sub>3</sub> plotted in Na<sub>2</sub>SO<sub>4</sub>, (0.1 M) electrolyte indicates <i>n-</i>type conduction with a flat band potential of -</span><span style="font-family:;" "=""><span>0.54 V<i><sub>SCE</sub></i>. The photocatalytic activity was performed for the photoreduction of water to hydrogen under visible light illumination. The best performance occurs at pH ~ 7 with an evolved volume of 5.9 mL.</span></span>
作者 Kahina Bounache Amel Boudjemaa Souhila Boumaza Meriem Haddad Warda Tallas Akila Belhadi Mohamed Trari Kahina Bounache;Amel Boudjemaa;Souhila Boumaza;Meriem Haddad;Warda Tallas;Akila Belhadi;Mohamed Trari(Laboratory of Chemistry of Natural gas, Faculty of Chemistry, University of Science and Technology Houari Boumediene, Algiers, Algeria;Centre de Recherche Scientifique et Technique en Analyses Physico-Chimique, Tipaza, Algeria;Laboratory of Storage and Valorization of Renewable Energies, Faculty of Chemistry, University of Science and Technology Houari Boumediene, Algiers, Algeria)
出处 《Open Journal of Physical Chemistry》 2021年第3期144-156,共13页 物理化学期刊(英文)
关键词 MoO</span><sub><span style="font-family:Verdana ">3</span></sub><span style="font-family:Verdana ">/ZnO Hetero-Junction Photocatalysis Hydrogen Visible Light MoO</span><sub><span style="font-family:Verdana ">3</span></sub><span style="font-family:Verdana ">/ZnO Hetero-Junction Photocatalysis Hydrogen Visible Light
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  • 1Changzheng Wang,Zhong Chen,Ying He,Lanying Li,Dong Zhang.Structure, morphology and properties of Fe-doped ZnO films prepared by facing-target magnetron sputtering system[J].Applied Surface Science.2009(15)
  • 2Y.Q. Wang,S.L. Yuan,L. Liu,P. Li,X.X. Lan,Z.M. Tian,J.H. He,S.Y. Yin.Ferromagnetism in Fe-doped ZnO bulk samples[J].Journal of Magnetism and Magnetic Materials.2008(8)
  • 3R. Y.Sato‐Berrú,A.Vázquez‐Olmos,A. L.Fernández‐Osorio,S.Sotres‐Martínez.Micro‐Raman investigation of transition‐metal‐doped ZnO nanoparticles[J].J Raman Spectrosc.2007(9)

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