Search Results - "Alam, Mahebub"

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  1. 1

    Thick crack-free {113} epitaxial boron-doped diamond layers for power electronics—Deposition with nitrogen addition and high microwave power by Alam, Mahebub, Hubik, Pavel, Gedeonova, Zuzana, Fekete, Ladislav, Kopecek, Jaromir, Taylor, Andrew, Mortet, Vincent

    Published in Applied physics letters (15-04-2024)
    “…In this work, first, we investigate the effect of nitrogen addition in microwave plasma enhanced chemical vapor deposition on the growth of thick {113}…”
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    Journal Article
  2. 2

    Origin and tuning of room temperature ferromagnetism and ferroelectricity in double perovskite Y2NiMnO6 nanostructured thin films by Alam, Mahebub, Mandal, Kalyan, Khan, Gobinda Gopal

    Published in Journal of alloys and compounds (05-05-2020)
    “…This work reports successful fabrication of double perovskite Y2NiMnO6 nanostructured thin films by pulsed laser deposition technique in oxygen and argon gas…”
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    Journal Article
  3. 3

    Multiferroic properties of bilayered BiFeO3/CoFe2O4 nano-hollowspheres by Alam, Mahebub, Talukdar, Souvanik, Mandal, Kalyan

    Published in Materials letters (01-01-2018)
    “…•Electric and magnetic properties indicate multiferroic behaviour of CFO/BFO NHSs.•The coexistence of the FE BiFeO3 and FM CoFe2O4 gives rise to a significant…”
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  4. 4

    Origin of ferroelectricity in multiferroic ErFeO3 by Alam, Mahebub, Mandal, Kalyan

    Published in Physica. B, Condensed matter (01-07-2021)
    “…ErFeO3 is a centrosymmetric Pnma/Pbnm structure with no ferroelectricity. However, most surprisingly, it shows ferroelectricity and antiferromagnetism at room…”
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  5. 5

    Room temperature ferromagnetism and ferroelectricity in double perovskite Y2NiMnO6 thin film by Alam, Mahebub, Mandal, Kalyan

    “…[Display omitted] •The Y2NiMnO6 films are found to exhibit unexpected room temperature ferromagnetism and spontaneous ferroelectricity.•It is found that the…”
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    Journal Article
  6. 6

    NiFe2O4 nano-hollow spheres with improved magnetic and dielectric properties by Mandal, Dipika, Alam, Mahebub, Mandal, Kalyan

    Published in Physica. B, Condensed matter (01-02-2019)
    “…From the detail morphology dependent studies, nano-hollow spheres (NHS) of NiFe2O4 (NFO) are found to exhibit better magnetic and dielectric properties…”
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  7. 7

    Microwave synthesis of surface functionalized ErFeO3 nanoparticles for photoluminescence and excellent photocatalytic activity by Alam, Mahebub, Chakraborty, Indranil, Mandal, Kalyan

    Published in Journal of luminescence (01-04-2018)
    “…Herein, we report the origin of inherent multicolor photoluminescence in functionalized and surface modified ErFeO3 nanoparticles. Moreover, we have found…”
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  8. 8

    Highly Occupied Surface States at Deuterium‐Grown Boron‐Doped Diamond Interfaces for Efficient Photoelectrochemistry by Sobaszek, Michał, Brzhezinskaya, Maria, Olejnik, Adrian, Mortet, Vincent, Alam, Mahebub, Sawczak, Mirosław, Ficek, Mateusz, Gazda, Maria, Weiss, Zdeněk, Bogdanowicz, Robert

    “…Polycrystalline boron‐doped diamond is a promising material for high‐power aqueous electrochemical applications in bioanalytics, catalysis, and energy storage…”
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  9. 9

    Multiferroic properties of bilayered BiFeO^sub 3^/CoFe^sub 2^O^sub 4^ nano-hollowspheres by Alam, Mahebub, Talukdar, Souvanik, Mandal, Kalyan

    Published in Materials letters (01-01-2018)
    “…Here, we reported the synthesis of bilayered BiFeO3/CoFe2O4 nano-hollow spheres (NHSs) by depositing a BiFeO3 (BFO) layer of thickness ~20 nm on CoFe2O4 (CFO)…”
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  10. 10

    Magnetic Field-Dependent Photoluminescence of Tartrate-Functionalized Gadolinium-Doped Manganese Ferrite Nanoparticles: A Potential Therapeutic Agent for Hyperbilirubinemia Treatment by Chakraborty, Indranil, Majumder, Deblina, Rakshit, Rupali, Alam, Mahebub, Mukherjee, Suprabhat, Gorai, Anupam, Mandal, Kalyan

    Published in ACS applied nano materials (28-05-2021)
    “…Herein, we report a magneto-photoluminescence study of transition metal oxide, in particular, Gd-doped (x = 0, 0.03, 0.10, and 0.15) MnFe2O4 (MnGd x Fe2–x O4)…”
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