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Ogorodova, L. P., Melchakova, L. V., Vigasina, M. F., Gritsenko, Yu. D., Ksenofontov, D. A. (2018) Calorimetric Study of Natural Basic Copper Phosphate—Pseudomalachite. Geochemistry International, 56 (5) 484-487 doi:10.1134/s001670291805004x

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Reference TypeJournal (article/letter/editorial)
TitleCalorimetric Study of Natural Basic Copper Phosphate—Pseudomalachite
JournalGeochemistry International
AuthorsOgorodova, L. P.Author
Melchakova, L. V.Author
Vigasina, M. F.Author
Gritsenko, Yu. D.Author
Ksenofontov, D. A.Author
Year2018 (May)Volume56
Page(s)484-487Issue5
PublisherPleiades Publishing Ltd
DOIdoi:10.1134/s001670291805004xSearch in ResearchGate
Mindat Ref. ID677550Long-form Identifiermindat:1:5:677550:0
GUID80c1ed41-2239-4461-b7a6-1cd74f555b18
Full ReferenceOgorodova, L. P., Melchakova, L. V., Vigasina, M. F., Gritsenko, Yu. D., Ksenofontov, D. A. (2018) Calorimetric Study of Natural Basic Copper Phosphate—Pseudomalachite. Geochemistry International, 56 (5) 484-487 doi:10.1134/s001670291805004x
Plain TextOgorodova, L. P., Melchakova, L. V., Vigasina, M. F., Gritsenko, Yu. D., Ksenofontov, D. A. (2018) Calorimetric Study of Natural Basic Copper Phosphate—Pseudomalachite. Geochemistry International, 56 (5) 484-487 doi:10.1134/s001670291805004x
In(2018, May) Geochemistry International Vol. 56 (5) Pleiades Publishing Ltd

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

J. B. Anderson, G. L. Shoemaker, E. Kostiner, and F. A. Ruszala, “The crystal structure of synthetic Cu5(PO4)2(OH)4, a polymorph of pseudomalachite,” Am. Mineral. 62, 115–121 (1977).
V. P. Ivanova, B. K. Kasatov, T. N. Krasavina, and E. L. Rozinova, Thermal Analysis of Minerals and Rocks (Nauka, Leningrad, 1974) [in Russian].
S. V. Krivovichev, A. A. Zolotarev, and V. I. Popova, “Hydrogen bonding and structural complexity in the Cu5(PO4)2(OH)4 polymorphs (pseudomalachite, ludjibaite, reichenbachite): combined experimental and theoretical study,” Structural Chem. (2016). doi 10.1007/s11224-016-0820-z
MINCRYST Crystallographic and Crystallochemical Database for Minerals and their Structural Analogues. database. iem.ac.ru/mincryst/rus/search.php K. Nakamoto, Infrared and Raman Spectra of Inorganic and Coordination Compounds (Wiley, 2008)
V. V. Pechkovskii, L. N. Shchegrov, and A. S. Shulman, Study of dehydration products of monosubstituted magnesium and calcium oryhophosphates, Zh. Neft. Khim. 14 (1), 53–57 (1969).
R. A. Robie and B. S. Hemingway, “Thermodynamic properties of minerals and related substances at 298.15K and 1 bar (105 pascals) pressure and at higher temperatures,” U.S. Geol. Surv. Bull. 2131, (1995).
G. L. Shoemaker and E. Kostiner, “Polymorphism in Cu5(PO4)2(OH)4,” Am. Mineral. 66, 176–181 (1981).
G. L. Shoemaker, J. B. Anderson, and E. Kostiner, “Refinement of the crystal structure of pseudomalachite,” Am. Mineral. 62, 1042–1048 (1977).
G. L. Shoemaker, J. B. Anderson, and E. Kostiner, “The crystal structure of a third polymorph of Cu5(PO4)2(OH)4,” Am. Mineral. 66, 169–175 (1981).
N. H. W. Sieber, E. Tillmanns, and O. Medenbach, “Hentschelite, CuFe2(PO4)2(OH)2, a new member of the lazurite group, and reichenbachite, Cu5(PO4)2(OH)4, a polymorph of pseudomalachite, two new copper phosphate minerals from Reichenbach, Germany,” Am. Mineral. 72, 404–408 (1987).


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