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Cited by
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This article has been cited by the following publications. This list is generated based on data provided by Crossref.

Plášil, J. Hloušek, J. Kasatkin, A. V. Škoda, R. Novák, M. and Čejka, J. 2015. Geschieberite, K2(UO2)(SO4)2(H2O)2, a new uranyl sulfate mineral from Jáchymov. Mineralogical Magazine, Vol. 79, Issue. 1, p. 205.
  • CrossRef
  • Google Scholar

Belogub, Elena V. Krivovichev, Sergey V. Pekov, Igor V. Kuznetsov, Aleksey M. Yapaskurt, Vasiliy O. Kotlyarov, Vasiliy A. Chukanov, Nikita V. and Belakovskiy, Dmitry I. 2015. Nickelpicromerite, K2Ni(SO4)2•6H2O, a new picromerite-group mineral from Slyudorudnik, South Urals, Russia. Mineralogy and Petrology, Vol. 109, Issue. 2, p. 143.
  • CrossRef
  • Google Scholar

Schöne, Sebastian Radoske, Thomas März, Juliane Stumpf, Thorsten and Ikeda-Ohno, Atsushi 2018. Synthesis and Characterization of Heterometallic Iron–Uranium Complexes with a Bidentate N-Donor Ligand (2,2′-Bipyridine or 1,10-Phenanthroline). Inorganic Chemistry, Vol. 57, Issue. 21, p. 13318.
  • CrossRef
  • Google Scholar

Lu, Grace Haes, Amanda J. and Forbes, Tori Z. 2018. Detection and identification of solids, surfaces, and solutions of uranium using vibrational spectroscopy. Coordination Chemistry Reviews, Vol. 374, Issue. , p. 314.
  • CrossRef
  • Google Scholar

Krivovichev, Sergey V. Meisser, Nicolas Brugger, Joel Chernyshov, Dmitry V. and Gurzhiy, Vladislav V. 2018. Synchrotron Diffraction Study of the Crystal Structure of Ca(UO2)6(SO4)2O2(OH)6·12H2O, a Natural Phase Related to Uranopilite. Minerals, Vol. 8, Issue. 12, p. 569.
  • CrossRef
  • Google Scholar

Škoda, Radek Vignola, Pietro Müller, Axel and Groat, Lee A. 2018. A Tribute To Milan Novák. The Canadian Mineralogist, Vol. 56, Issue. 4, p. 357.
  • CrossRef
  • Google Scholar

Gurzhiy, Vladislav V. and Plášil, Jakub 2019. Structural complexity of natural uranyl sulfates. Acta Crystallographica Section B Structural Science, Crystal Engineering and Materials, Vol. 75, Issue. 1, p. 39.
  • CrossRef
  • Google Scholar

Kampf, Anthony R. Plášil, Jakub Kasatkin, Anatoly V. Nash, Barbara P. and Marty, Joe 2019. Magnesioleydetite and straβmannite, two new uranyl sulfate minerals with sheet structures from Red Canyon, Utah. Mineralogical Magazine, Vol. 83, Issue. 03, p. 349.
  • CrossRef
  • Google Scholar

Nazarchuk, Evgeny Charkin, Dmitri Siidra, Oleg and Kalmykov, Stepan 2020. Organically Templated Layered Uranyl Molybdate [C3H9NH+]4[(UO2)3(MoO4)5] Structurally Based on Mineral-Related Modular Units. Minerals, Vol. 10, Issue. 8, p. 659.
  • CrossRef
  • Google Scholar

Mosleh, Mahmoud A. El-Hakim, Elham H. Ahmed, Anwar Z. El-Ghany, Mohamed S. Abd and El-Didamony, Akram M. 2020. Tri-n-octylamine impregnated Seplite LX-16 resin for extraction of U(VI) from sulfate medium. Journal of Radioanalytical and Nuclear Chemistry, Vol. 323, Issue. 2, p. 909.
  • CrossRef
  • Google Scholar

Chukanov, Nikita V. and Vigasina, Marina F. 2020. Vibrational (Infrared and Raman) Spectra of Minerals and Related Compounds. p. 741.
  • CrossRef
  • Google Scholar

Kornyakov, Ilya V. Tyumentseva, Olga S. Krivovichev, Sergey V. Tananaev, Ivan G. and Gurzhiy, Vladislav V. 2021. Crystal chemistry of the M2+[(UO2)(T6+O4)2(H2O)](H2O)4 (M2+ = Mg, Mn, Fe, Co, Ni and Zn; T6+ = S, Se) compounds: the interplay between chemical composition, pH and structural architecture. CrystEngComm, Vol. 23, Issue. 5, p. 1140.
  • CrossRef
  • Google Scholar

Kampf, Anthony R. Plášil, Jakub Olds, Travis A. Ma, Chi and Marty, Joe 2023. Shinarumpite, a new cobalt uranyl sulfate mineral from the Scenic mine, San Juan County, Utah, USA, structurally related to leydetite. Mineralogical Magazine, Vol. 87, Issue. 3, p. 348.
  • CrossRef
  • Google Scholar

Plášil, Jakub Kampf, Anthony R. Ma, Chi and Desor, Joy 2023. Oldsite, K2Fe2+[(UO2)(SO4)2]2(H2O)8, a new uranyl sulfate mineral from Utah, USA: its description and implications for the formation and occurrences of uranyl sulfate minerals. Mineralogical Magazine, Vol. 87, Issue. 1, p. 151.
  • CrossRef
  • Google Scholar

Spano, Tyler L. Olds, Travis A. McDonnell, Marshall Smith, Robert and Shields, Ashley E. 2024. Raman spectroscopic investigation of selected natural uranyl sulfate minerals. American Mineralogist, Vol. 109, Issue. 2, p. 274.
  • CrossRef
  • Google Scholar

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Leydetite, Fe(UO2)(SO4)2(H2O)11, a new uranyl sulfate mineral from Mas d’Alary, Lodève, France
  • Volume 77, Issue 4
  • J. Plášil (a1), A. V. Kasatkin (a2), R. Škoda (a3), M. Novák (a3), A. Kallistová (a4), M. Dušek (a1), R. Skála (a4), K. Fejfarová (a1), J. Čejka (a5), N. Meisser (a6), H. Goethals (a7), V. Machovič (a8) (a9) and L. Lapčák (a8)
  • DOI: https://doi.org/10.1180/minmag.2013.077.4.03
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Leydetite, Fe(UO2)(SO4)2(H2O)11, a new uranyl sulfate mineral from Mas d’Alary, Lodève, France
  • Volume 77, Issue 4
  • J. Plášil (a1), A. V. Kasatkin (a2), R. Škoda (a3), M. Novák (a3), A. Kallistová (a4), M. Dušek (a1), R. Skála (a4), K. Fejfarová (a1), J. Čejka (a5), N. Meisser (a6), H. Goethals (a7), V. Machovič (a8) (a9) and L. Lapčák (a8)
  • DOI: https://doi.org/10.1180/minmag.2013.077.4.03
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Leydetite, Fe(UO2)(SO4)2(H2O)11, a new uranyl sulfate mineral from Mas d’Alary, Lodève, France
  • Volume 77, Issue 4
  • J. Plášil (a1), A. V. Kasatkin (a2), R. Škoda (a3), M. Novák (a3), A. Kallistová (a4), M. Dušek (a1), R. Skála (a4), K. Fejfarová (a1), J. Čejka (a5), N. Meisser (a6), H. Goethals (a7), V. Machovič (a8) (a9) and L. Lapčák (a8)
  • DOI: https://doi.org/10.1180/minmag.2013.077.4.03
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