Search Results - "Yarmoshenko, Yu M"

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  1. 1

    X-Ray Image Registration by a Detector Based on Microchannel Plates by Yarmoshenko, Yu. M., Kantur, I. E., Dolgikh, V. E., Kuznetsova, T. V.

    “…An X-ray image registration system that consists of a detector that contains two microchannel plates (MCPs), an optical lens, and a digital video camera is…”
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  2. 2

    Synthesis, crystal structure and electronic structure of AgxZrTe2 by Shkvarina, E.G., Merentsov, A.I., Shkvarin, A.S., Postnikov, M.S., Titov, A.A., Tsud, N., Yarmoshenko, Yu.M., Patrakov, E.I., Titov, A.N.

    Published in Journal of alloys and compounds (15-06-2022)
    “…A systematic study of the crystal and electronic structure of the intercalation compound AgxZrTe2 in the Ag concentration range of x = 0–0.37 has been…”
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  3. 3

    Band Gap Width Control by Cu Intercalation Into ZrSe2 by Shkvarin, A. S, Merentsov, A. I, Yarmoshenko, Yu. M, Postnikov, M. S, Shkvarina, E. G, Titov, A. A, Pis, I, Nappini, S, Bondino, F, Titov, A. N

    Published in Journal of physical chemistry. C (10-01-2019)
    “…The Cu x ZrSe2 intercalation single crystals have been synthesized and studied in a concentration range of x = 0–0.3, in which the semiconductor-metal…”
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  4. 4

    Electronic structure of octahedrally coordinated Cr in CrxTiX2 (X=Se, Te) and TixCr1−xSe2 by Shkvarin, A.S., Yablonkikh, M.V., Yarmoshenko, Yu.M., Merentsov, A.I., Senkovskiy, B.V., Avila, J., Asensio, M., Titov, A.N.

    “…•CrxTiyX2 (X=Se, Te) were synthesized.•XAS, XPS and RXPS spectra was obtained.•Multiplet calculation of Cr3+ XAS and Ti4+ XAS was performed.•Influence of…”
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  5. 5

    An X-ray spectrscopy study of the electronic structure of TiS3 by Shkvarin, A. S., Yarmoshenko, Yu. M., Yablonskikh, M. V., Merentsov, A. I., Titov, A. N.

    Published in Journal of structural chemistry (01-11-2014)
    “…X-ray photoemission and absorption spectra of TiS 3 are studied. The temperature dependence of the magnetic susceptibility is measured and the electron density…”
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  6. 6

    Effect of atmospheric nitrogen on the oxidation mechanism of aluminum alloys with rare-earth metals by Akashev, L. A., Popov, N. A., Yarmoshenko, Yu. M., Druzhinin, A. V., Shevchenko, V. G.

    Published in Russian journal of applied chemistry (01-12-2015)
    “…Interaction (25–620°C) of aluminum and its alloys with an atmosphere saturated with nitrogen was studied to determine the role played by rare-earth metals in…”
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  7. 7

    Resonance photoelectron spectroscopy of TiX2 (X = S, Se, Te) titanium dichalcogenides by Shkvarin, A. S., Yarmoshenko, Yu. M., Skorikov, N. A., Yablonskikh, M. V., Merentsov, A. I., Shkvarina, E. G., Titov, A. N.

    “…The photoelectron valence band spectra of TiS 2 , TiSe 2 , and TiTe 2 dichalcogenides are investigated in the Ti 2 p -3 d resonance regime. Resonance bands in…”
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  8. 8

    Charge transfer and band gap of ferrocene intercalated into TiSe 2 by Titov, A.N., Yarmoshenko, Yu. M., Bazylewski, P., Yablonskikh, M.V., Kurmaev, E.Z., Wilks, R., Moewes, A., Tsurin, V.A., Fedorenko, V.V., Suvorova, O.N., Ketkov, S. Yu, Neumann, M., Chang, G.S.

    Published in Chemical physics letters (20-09-2010)
    “…[Display omitted] ► Intercalation of organic ferrocene molecules into TiSe 2 dichalcogenide. ► Experimental verification of charge transfer from ferrocene to…”
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  10. 10

    Absorption spectroscopic study of the conduction band of titanium dichalcogenides by Titov, A. N., Yarmoshenko, Yu. M., Zimina, A., Yablonskikh, M. V., Postnikov, A. V., Eisebitt, S.

    Published in Physics of the solid state (01-06-2008)
    “…The L 2, 3 spectra of titanium in the layered compound TiSe 2 and intercalated compounds Fe 1/2 TiSe 2 , Cr 1/3 TiSe 2 , and Fe 1/4 TiTe 2 are studied…”
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  11. 11

    Circular dichroism of photoemission of Fe1/4TiTe2 by Kuznetsova, T. V., Yarmoshenko, Yu. M., Titov, A. N., Vilmercati, P., Goldoni, A., Klessen, R.

    Published in Journal of structural chemistry (01-12-2008)
    “…High-resolution ARPES has been employed for examination of angular distribution of valence band photoelectrons emitted by a Fe 1/4 TiTe 2 single crystal near…”
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  12. 12
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    Local magnetic moments at X-ray spectra of 3d metals by Yablonskikh, M.V., M. Yarmoshenko, Yu, Gerasimov, E.G., Gaviko, V.S., Korotin, M.A., Kurmaev, E.Z., Bartkowski, S., Neumann, M.

    “…The Mn X-ray emission spectra and X-ray photoelectron spectra of Mn-based Heusler alloys Co 2MnAl, Co 2MnSb and La 1− x Sm x Mn 2Si 2 rare-earth compounds (…”
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  14. 14
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    High-resolution angle-resolved resonant-photoemission spectroscopy of FexTiTe2 by Yamazaki, K, Shimada, K, Negishi, H, Xu, F, Ino, A, Higashiguchi, M, Namatame, H, Taniguchi, M, Sasaki, M, Titova, S, Titov, A, Yarmoshenko, Yu M

    Published in Physica. B, Condensed matter (15-09-2004)
    “…The electronic band structures of 1T-TiTe2 and Fe0.25TiTe2 have been clarified by angle-resolved resonant-photoemission spectroscopy. Upon Fe intercalation,…”
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    Magnetic circular dichroism in X-ray fluorescence of Heusler alloys at threshold excitation by Yablonskikh, M.V, Grebennikov, V.I, Yarmoshenko, Yu.M, Kurmaev, E.Z, Butorin, S.M, Duda, L.-C, Sȧthe, C, Käämbre, T, Magnuson, M, Nordgren, J, Plogmann, S, Neumann, M

    Published in Solid state communications (01-12-2000)
    “…The results of fluorescence measurements of magnetic circular dichroism (MCD) in Mn L 2,3 X-ray emission and absorption for Heusler alloys NiMnSb and Co 2MnSb…”
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  19. 19

    The electronic structure formation of CuxTiSe2 in a wide range (0.04 < x < 0.8) of copper concentration by Shkvarin, A. S, Yarmoshenko, Yu. M, Yablonskikh, M. V, Merentsov, A. I, Shkvarina, E. G, Titov, A. A, Titov, A. N

    Published 10-09-2015
    “…An experimental study of the electronic structure of copper intercalated titanium dichalcogenides in a wide range of copper concentrations (x = 0.05 - 0.6)…”
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  20. 20

    Electronic structure of titanium dichalcogenides TiX2 (X = S, Se, Te) by Shkvarin, A. S., Yarmoshenko, Yu. M., Skorikov, N. A., Yablonskikh, M. V., Merentsov, A. I., Shkvarina, E. G., Titov, A. N.

    “…The electronic structure and the chemical bond in titanium dichalcogenides TiX 2 (X = S, Se, Te), which are promising electrode materials for lithium…”
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