Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Čermáková, Z.
Hradilová, J.
Jehlička, J.
Osterrothová, K.
Massanek, A.
Bezdička, P.
and
Hradil, D.
2014.
Identification of Vivianite in Painted Works of Art and Its Significance for Provenance and Authorship Studies.
Archaeometry,
Vol. 56,
Issue. S1,
p.
148.
Čermáková, Zdeňka
Švarcová, Silvie
Hradilová, Janka
Bezdička, Petr
Lančok, Adriana
Vašutová, Vlasta
Blažek, Jan
and
Hradil, David
2015.
Temperature-related degradation and colour changes of historic paintings containing vivianite.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy,
Vol. 140,
Issue. ,
p.
101.
Makreski, Petre
Stefov, Stefan
Pejov, Ljupčo
and
Jovanovski, Gligor
2015.
Theoretical and experimental study of the vibrational spectra of (para)symplesite and hörnesite.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy,
Vol. 144,
Issue. ,
p.
155.
Runčevski, Tomče
Makreski, Petre
Dinnebier, Robert E.
and
Jovanovski, Gligor
2015.
The Crystal Structure of Symplesite.
Zeitschrift für anorganische und allgemeine Chemie,
Vol. 641,
Issue. 7,
p.
1207.
Chua, L.
Maynard-Casely, H.E.
Thomas, P.S.
Head, K.
and
Stuart, B.H.
2016.
Characterisation of blue pigments from ceremonial objects of the Southern Highlands in Papua New Guinea using vibrational spectroscopy and X-ray diffraction.
Vibrational Spectroscopy,
Vol. 85,
Issue. ,
p.
43.
Lancok, Adriana
and
Volfova, Lenka
2017.
Mössbauer spectroscopy: epoch-making biological and chemical applications.
Pure and Applied Chemistry,
Vol. 89,
Issue. 4,
p.
461.
Ogorodova, Lyubov
Vigasina, Marina
Mel'chakova, Lyubov
Rusakov, Vyacheslav
Kosova, Dariya
Ksenofontov, Dmitrii
and
Bryzgalov, Igor
2017.
Enthalpy of formation of natural hydrous iron phosphate: Vivianite.
The Journal of Chemical Thermodynamics,
Vol. 110,
Issue. ,
p.
193.
Chukanov, Nikita V.
Aksenov, Sergey M.
Rastsvetaeva, Ramiza K.
Schäfer, Christof
Pekov, Igor V.
Belakovskiy, Dmitriy I.
Scholz, Ricardo
de Oliveira, Luiz C.A.
and
Britvin, Sergey N.
2017.
Eleonorite, Fe63+(PO4)4O(OH)4·6H2O: validation as a mineral species and new data.
Mineralogical Magazine,
Vol. 81,
Issue. 1,
p.
61.
Maciąg, Łukasz
Rydzewska, Urszula
Skowronek, Artur
and
Salwa, Sylwester
2019.
Mineralogy and Geochemistry of Fluvial-Lacustrine Pisolith Micronodules from the Roztoka Odrzańska, Odra River, NW Poland.
Geosciences,
Vol. 10,
Issue. 1,
p.
3.
CHIBA, Kohei
TAKAHASHI, Misaki
OHSHIMA, Eriko
KAWAMATA, Toru
and
SUGIYAMA, Kazumasa
2020.
The synthesis of metavivianite and the oxidation sequence of vivianite.
Journal of Mineralogical and Petrological Sciences,
Vol. 115,
Issue. 6,
p.
485.
Chukanov, Nikita V.
and
Vigasina, Marina F.
2020.
Vibrational (Infrared and Raman) Spectra of Minerals and Related Compounds.
p.
741.
Etique, Marjorie
Bouchet, Sylvain
Byrne, James M.
ThomasArrigo, Laurel K.
Kaegi, Ralf
and
Kretzschmar, Ruben
2021.
Mercury Reduction by Nanoparticulate Vivianite.
Environmental Science & Technology,
Vol. 55,
Issue. 5,
p.
3399.
Shen, Mengmeng
Lu, Zhiyun
Xu, Yan
and
He, Xuemei
2021.
Vivianite and Its Oxidation Products in Mammoth Ivory and Their Implications to the Burial Process.
ACS Omega,
Vol. 6,
Issue. 34,
p.
22284.
Aksenov, S. M.
Charkin, D. O.
Banaru, A. M.
Banaru, D. A.
Volkov, S. N.
Deineko, D. V.
Kuznetsov, A. N.
Rastsvetaeva, R. K.
Chukanov, N. V.
Shkurskii, B. B.
and
Yamnova, N. A.
2023.
Modularity, polytypism, topology, and complexity of crystal structures of inorganic compounds (Review).
Journal of Structural Chemistry,
Vol. 64,
Issue. 10,
p.
1797.
Henkel, Gerald
2023.
Unravelling the mechanisms behind oxidative transformations of vivianite and parasymplesite into previously not recognized materials with unexpected oxidation states of iron – a systematic review.
Zeitschrift für anorganische und allgemeine Chemie,
Vol. 649,
Issue. 21,
Long, Gary J.
and
Grandjean, Fernande
2023.
Mössbauer Spectroscopy.
p.
33.
Silva, Gabriel Gonçalves
Vincenzi, Roberta Almeida
de Araujo, Gabriel Guarany
Venceslau, Sara Jéssica Soja
and
Rodrigues, Fabio
2024.
Siderite and vivianite as energy sources for the extreme acidophilic bacterium Acidithiobacillus ferrooxidans in the context of mars habitability.
Scientific Reports,
Vol. 14,
Issue. 1,