Prof. Dr. Mohamed Ibrahim Zaki

Profil

Derzeitige StellungProfessor W-3 und Äquivalente
FachgebietReaktionskinetik und Katalyse
KeywordsChemistry, Heterogeneous Catalysis, Physical Chemistry, Surface Chemistry, Surface Spectroscopy

Aktuelle Kontaktadresse

LandÄgypten
OrtMinya
Universität/InstitutionMinia University
Institut/AbteilungChemistry Department, Faculty of Science
Websitewww.sccmu.org

Gastgeber*innen während der Förderung

Prof. Dr. Helmut KnözingerInstitut für Physikalische Chemie, Ludwig-Maximilians-Universität München (LMU), München
Beginn der ersten Förderung01.02.1985

Programm(e)

1984Humboldt-Forschungsstipendien-Programm

Publikationen (Auswahl)

2013M.I. Zaki, A Katrib, A.I. Muftah, T.C. Jagadale, M. Ikram and S.B. Ogale: Exploring anatase-TiO2 doped dilutely with transition metal ions as nano-catalyst for H2O2 decomposition: Spectroscopic and kinetic studies. In: Applied Catalysis A, 2013, 214
2013H. Al-Kandari, A.M. Mohamed, S. Al-Kandari, F. Al-Kharafi, G.A. Mekhemer, M.I. Zaki and A. Katrib: Spectroscopic characterization-catalytic activity correlation of molybdena based catalysts. In: Journal of Molecular Catalysis A, 2013, 1
2012H. Al-Kandari, A.M. Mohamed, F. Al-Kharafi, M.I. Zaki and A. Katrib: Modification of the catalytic properties of MoO2-x(OH)y dispersed on TiO2 by Pt and Cs additives. In: Applied Catalysis A, 2012, 298
2012S.J. Al-Omani, A. Bumajdad, F.A. Al-Sagheer and M.I. Zaki: Surface and related bulk properties of titania nanoparticles recovered from aramid-titania hybrid films: A novel attempt . In: Materials Research Bulletin, 2012, 3308
2011G.A.H. Mekhemer, A.F. Bukhzam, A.S. El-Towaty and M.I. Zaki: N2 Sorptiometric Study of Phosphation and Dispersion of Lanthana on Alumina Catalysts . In: Adsorption Science and Technology, 2011, 927
2011M.I. Zaki, N.E. Fouad, S.A.A. Mansour and A.I. Muftah: Temperature-programmed and X-ray diffractometry studies of hydrogen- reduction course and products of WO3 powder: Influence of reduction parameters. In: Thermochimica Acta, 2011, 90
2011B.A.A. Balboul and M.I. Zaki: Thermal decomposition course of Eu(CH3COO)3.4H2O and the reactivity at the gas/solid interface thus established. In: Journal of Analytical and Applied Pyrolysis, 2011, 137
2011M.I.Zaki, N.E. Fouad, G.A.H. Mekhemer, T.C. Jagadale and S.B. Ogale: TiO2 nanoparticle size dependence of porosity, adsorption and catalytic activity. In: Colloids and Surfaces A, 2011, 195
2010S.B. Bukallah, A. Bumajdad, K.M.S. Khalil and M.I. Zaki Characterization of mesoporous VOx/MCM-41 composite materials obtained via post-synthesis impregnation. In: Applied Surface Science, 2010, 6179
2010A. Bumajdad, M.A. Hasan, M.I. Zaki, G.A.H. Mekhemer, L. Pasupulety and A. Mathew: Impacts of CuOx additive on the CO oxidation activity and related surface and bulk properties of a nano-CeO2 catalyst. In: Reaction Kinetics, Mechanisms and Catalysis, 2010, 345
2010L.A. Al-Hajji, M.A. Hasan and M.I. Zaki: Kinetics of formation of barium tungstate in equimolar powder mixture of BaCO3 and WO3: Thermogravimetric and spectroscopic studies. In: Journal of Thermal Analysis and Calorimetry, 2010, 100
2010M.I. Zaki, G.A.H. Mekhemer, N.E. Fouad, T.C. Jagadale and S.B. Ogale: Surface texture and specific adsorption sites of sol–gel synthesized anatase TiO2 nanoparticle. In: Matertials Research Bulletin, 2010, 1470
2006M.I.Zaki, H. Knoezinger and B. Tesche Structural and Morphological Consequences of High-Temperature Treatments of Hydroxyapatite in the Absence or Presence of HCl Vapour. In: Langmuir, 2006, 749-755
2005G.A.H. Mekhemer, S.A. Halawy, M.A. Mohamed, and M.I. Zaki: Ketonization of Acetic Acid Vapour Over Polycrystalline Magnesia: in situ Fourier transform Infrared Spectroscopy and Kinetic Studies. In: J. Catal., 2005, 109-122
2005Ahmed K. H. Nohman, Mohamed M. Mohamed, Mohamed I. Zaki: Redox catalysis on manganese oxides: Surface attributes and reaction mechanisms. In: Current Topics in Catalysis, 2005, 43-78
2004G. A. H. Mekhemer, S. A. Halawy, M. A. Mohamed, Mohamed I. Zaki: Qualitative and Quantitative Assessments of Acid and Base Sites Exposed on Polycrystalline MgO Surfaces: Thermogravimetric, Calorimetric, and in-Situ FTIR Spectroscopic Study Combination. In: J. Phys. Chem. B, 2004, 13379-13386