Search Results - "Zakaria, A.K.M."

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    Highly dense and chemically stable proton conducting electrolyte sintered at 1200 °C by Hossain, Shahzad, Abdalla, Abdalla M., Radenahmad, Nikdalila, Zakaria, A.K.M., Zaini, Juliana H., Rahman, S.M. Habibur, Eriksson, Sten G., Irvine, John T.S., Azad, Abul K.

    “…The BaCe0.7Zr0.1Y0.2−xZnxO3−δ (x = 0.05, 0.10, 0.15, 0.20) has been synthesized by the conventional solid state reaction method for application in protonic…”
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    Study of the cation distribution and crystallographic properties of the spinel system NiCrxFe2-xO4 (0.0≤x≤1.0) by neutron diffraction by Jahan, N., Zakaria, A.K.M., Chowdhury, F.-U.-Z., Aktar, M.S., Datta, T.K.

    Published in Materials chemistry and physics (01-12-2017)
    “…The spinel system NiCrxFe2-xO4 with composition x = 0.0, 0.2, 0.4, 0.6, 0.8 and 1.0 were obtained by solid state sintering technique in air at 1350 °C. X-ray…”
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    Structural and magnetic characterizations of NixCu0.8-x Zn0.2Fe2O4 spinel ferrites by Elius, I. B., Hossain, S., Aktar, M. S., Zakaria, A. K. M., Kamal, I., Hoque, S. M., Azad, A. K.

    Published in Ferroelectrics (2021)
    “…The Ni-Cu-Zn ferrites are one of the most exciting spinel oxides so far because of its diverse applications. In the current study, the ratio of nickel and…”
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    Experimental cross section of the 71Ga(n,γ)72Ga reaction at 0.0334eV energy by Afroze, N., Uddin, M.S., Hossain, S.M., Islam, M.A., Shariff, M.A., Zakaria, A.K.M., Datta, T.K., Azharul Islam, S.M.

    “…•Neutrons were monochromatized from powder diffractometer.•The cross section of the 71Ga(n,γ)72Ga reaction at 0.0334eV was measured.•The 197Au(n,γ)198Au…”
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    Cation distribution and crystallographic characterization of the spinel oxides MgCrxFe2−xO4 by neutron diffraction by Zakaria, A.K.M., Nesa, Faizun, Saeed Khan, M.A., Datta, T.K., Aktar, Sanjida, Liba, Samia Islam, Hossain, Shahzad, Das, A.K., Kamal, I., Yunus, S.M., Eriksson, S.-G.

    Published in Journal of alloys and compounds (05-06-2015)
    “…•MgCrxFe2−xO4 ferrites crystallize at 1300°C and possess cubic symmetry.•Cation distribution and crystallographic parameters have been determined…”
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    Studies of the magnetic ordering in the spinel system Zn 0.4Co 0.6Al x Fe 2− x O 4 by neutron diffraction by Zakaria, A.K.M., Asgar, M.A.

    Published in Journal of alloys and compounds (2005)
    “…Magnetic properties of the spinel ferrite Zn 0.4Co 0.6Al x Fe 2− x O 4 with x = 0.0, 0.25, 0.50, 0.75 and 1.0 have been investigated by neutron diffraction…”
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    Neutron diffraction studies of the magnetic ordering in the spinel oxide system Mg x Co 1− x Cr x Fe 2− x O 4 by Yunus, S.M., Yamauchi, Hiroki, Zakaria, A.K.M., Igawa, Naoki, Hoshikawa, Akinori, Haga, Yoshinori, Ishii, Yoshinobu

    Published in Journal of alloys and compounds (2008)
    “…Neutron diffraction studies were performed on the spinel oxide system Mg x Co 1− x Cr x Fe 2− x O 4 ( x = 0.0, 0.25, 0.50, 0.75 and 1.0) as a function of…”
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    Cation distribution and crystallographic characterization of the quaternary spinel system Mg x Co 1− x Cr x Fe 2− x O 4 by Yunus, S.M., Yamauchi, Hiroki, Zakaria, A.K.M., Igawa, Naoki, Hoshikawa, Akinori, Ishii, Yoshinobu

    Published in Journal of alloys and compounds (2008)
    “…Quaternary spinel compound Mg x Co 1− x Cr x Fe 2− x O 4 ( x = 0.0, 0.25, 0.50, 0.75 and 1.0) was synthesized in the solid state sintering method. Neutron…”
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    Study of the magnetic structure in the spinel oxides MnGa x Fe 1− x CrO 4 by neutron diffraction by Zakaria, A.K.M., Asgar, M.A., Eriksson, S.-G., Ahmed, F.U., Yunus, S.M.

    “…Magnetic properties of the spinel system MnGa x Fe 1− x CrO 4 have been investigated using neutron diffraction (ND) technique in the temperature range 600 K⩾…”
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    Measurement of neutron capture cross-section of the 71Ga(n, γ) 72Ga reaction at 0.0536 eV energy by Uddin, M.S., Chowdhury, M.H., Hossain, S.M., Latif, Sk.A., Hafiz, M.A., Islam, M.A., Zakaria, A.K.M., Yunus, S.M., Azharul Islam, S.M.

    “…The neutron capture cross-section for the 71Ga(n, γ) 72Ga reaction at 0.0536 eV energy was measured using activation technique based on TRIGA Mark-II research…”
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