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plasilite

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Sheets in the structures of johannite, plášilite, deliensite and feynmanite. The unit cells are shown by dashed lines. For plášilite, H atoms are shown as white spheres and O–H bonds are shown as sticks. H atom positions were not determined in the other structures.
Published: 01 April 2019
Fig. 5. Sheets in the structures of johannite, plášilite, deliensite and feynmanite. The unit cells are shown by dashed lines. For plášilite, H atoms are shown as white spheres and O–H bonds are shown as sticks. H atom positions were not determined in the other structures.
Journal Article
Published: 01 April 2019
Mineralogical Magazine (2019) 83 (2): 153–160.
...Fig. 5. Sheets in the structures of johannite, plášilite, deliensite and feynmanite. The unit cells are shown by dashed lines. For plášilite, H atoms are shown as white spheres and O–H bonds are shown as sticks. H atom positions were not determined in the other structures. ...
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Image
The uranyl-sulfate sheets in the structures of greenlizardite, plášilite, deliensite, johannite and meitnerite. (Online version in colour)
Published: 01 September 2018
Fig. 5 The uranyl-sulfate sheets in the structures of greenlizardite, plášilite, deliensite, johannite and meitnerite. (Online version in colour)
Image
The uranyl sulfate sheets in greenlizardite, johannite, plášilite and deliensite. UO7 bipyramids are blue and SO4 tetrahedra are yellow. Note the differing orientations of SO4 tetrahedra.
Published: 01 April 2018
Fig. 4. The uranyl sulfate sheets in greenlizardite, johannite, plášilite and deliensite. UO 7 bipyramids are blue and SO 4 tetrahedra are yellow. Note the differing orientations of SO 4 tetrahedra.
Journal Article
Published: 01 April 2017
Mineralogical Magazine (2017) 81 (2): 273–285.
... it occurs as a secondary alteration phase. At the Green Lizard mine, it is found in association with calcite, gypsum, plášilite, pyrite, rozenite and sulfur; at the Giveaway-Simplot mine, shumwayite is associated with rhomboclase and römerite. The mineral occurs as pale greenish-yellow monoclinic prisms...
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Image
View of the dimers and trimers of edge-sharing uranyl pentagonal bipyramids in the structure of furongite (a), parsonite (b), lakebogaite (c), plášilite (d), francevillite (e) and Ag6[(UO2)3O (MoO4)5] (f). Yellow, UO7; green, PO4; blue, SO4; red, VO5; and pink, MoO4 groups. (Online version in colour.)
Published: 01 June 2017
Fig. 6 View of the dimers and trimers of edge-sharing uranyl pentagonal bipyramids in the structure of furongite (a), parsonite (b), lakebogaite (c), plášilite (d), francevillite (e) and Ag 6 [(UO 2 ) 3 O (MoO 4 ) 5 ] (f). Yellow, UO 7 ; green, PO 4 ; blue, SO 4 ; red, VO 5; and pink, MoO 4
Journal Article
Published: 01 November 2016
American Mineralogist (2016) 101 (11): 2570–2573.
... new mineral species, including dmisokolovite, geschieberite, imayoshiite, palladosilicide, plášilite, raisaite, shchurovskyite, svornostite, and vanackerite. * All minerals marked with an asterisk have been approved by the IMA CNMMC. † For a complete listing of all IMA-validated...
Journal Article
Published: 01 February 2024
American Mineralogist (2024) 109 (2): 274–285.
... ), fermiite ( Kampf et al. 2015b ), belakovskiite ( Kampf et al. 2014 ), plášilite ( Kampf et al. 2015a ), feynmanite ( Kampf et al. 2019a ), bluelizardite ( Plášil et al. 2014b ), meisserite ( Plášil et al. 2013a ), and rabejacite ( Plášil et al. 2014a ). Crystalline samples of each mineral listed in Table...
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Journal Article
Published: 01 April 2018
Mineralogical Magazine (2018) 82 (2): 401–411.
...Fig. 4. The uranyl sulfate sheets in greenlizardite, johannite, plášilite and deliensite. UO 7 bipyramids are blue and SO 4 tetrahedra are yellow. Note the differing orientations of SO 4 tetrahedra. ...
FIGURES | View All (5)
Journal Article
Published: 01 September 2018
European Journal of Mineralogy (2018) 30 (5): 999–1006.
...Fig. 5 The uranyl-sulfate sheets in the structures of greenlizardite, plášilite, deliensite, johannite and meitnerite. (Online version in colour) ...
FIGURES | View All (6)
Journal Article
Published: 01 September 2021
American Mineralogist (2021) 106 (9): 1537–1543.
... underground in the Blue Lizard and the Markey mines as a rare mineral in the secondary mineral assemblages and at both locations on pyrite-rich asphaltum matrix. At the Blue Lizard mine, it occurs in association with chinleite-(Y), gypsum, goethite, natrojarosite, natrozippeite, plášilite, and shumwayite...
Journal Article
Published: 31 March 2020
Mineralogical Magazine (2021) 85 (3): 438–443.
... (Burns, 2005 ) found in plášilite (Kampf et al. , 2015b ) and several other recently described Red Canyon minerals. Electron probe microanalyses (6 points on 3 crystals) were performed at the University of Utah on a Cameca SX-100 electron microprobe with four wavelength dispersive spectrometers...
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Journal Article
Published: 30 May 2018
The Canadian Mineralogist (2018) 56 (3): 235–245.
... ammoniozippeite has been found with a wide variety of other secondary phases including blödite, bobcookite, brochantite, chalcanthite, devilline, dickite, ferrinatrite, gerhardtite, gypsum, johannite, krönkite, magnesiozippeite, natrozippeite, pentahydrate, pickeringite, plášilite, posnjakite, redcanyonite...
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Journal Article
Published: 01 August 2014
Mineralogical Magazine (2014) 78 (4): 797–804.
... to cite: Miyawaki, R., Matsubara, S., Yokoyama, K., Shigeoka, M., Momma, K. and Yamamoto, S. (2014) Mieite-(Y), IMA 2014-020. CNMNC Newsletter No. 21, August 2014, page 799; Mineralogical Magazine , 78 , 797–804. IMA No. 2014-021 Plášilite Na(UO 2 )(SO 4 )(OH)·2H 2 O Blue Lizard Mine...
Journal Article
Published: 01 October 2015
Mineralogical Magazine (2015) 79 (5): 1123–1142.
... ( Plášil et al. , 2014 ), meisserite ( Plášil et al. , 2013 ), plášilite ( Kampf et al ., 2015 a ), bobcookite ( Kampf et al ., 2015 b ) and wetherillite ( Kampf et al ., 2015 b ). The seventh and eighth new uranyl sulfates from this mine, fermiite and oppenheimerite, are described herein...
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Journal Article
Published: 01 August 2017
Mineralogical Magazine (2017) 81 (4): 753–779.
... ). To date, our investigations have yielded eight new uranyl sulfate minerals, belakovskiite, bluelizardite, fermiite, meisserite, oppenheimerite, plášilite, bobcookite and wetherillite. The ninth, tenth and eleventh new uranyl sulfates from this mine, klaprothite, péligotite and ottohahnite, are described...
FIGURES | View All (12)
Journal Article
Published: 01 June 2017
European Journal of Mineralogy (2017) 29 (3): 517–527.
...Fig. 6 View of the dimers and trimers of edge-sharing uranyl pentagonal bipyramids in the structure of furongite (a), parsonite (b), lakebogaite (c), plášilite (d), francevillite (e) and Ag 6 [(UO 2 ) 3 O (MoO 4 ) 5 ] (f). Yellow, UO 7 ; green, PO 4 ; blue, SO 4 ; red, VO 5; and pink, MoO 4...
FIGURES | View All (7)
Journal Article
Published: 01 June 2015
Mineralogical Magazine (2015) 79 (3): 695–714.
... ) and plášilite (Kampf et al. , 2015), have been published recently by our team. The fifth and sixth, bobcookite and wetherillite, are described herein. All of the new uranyl sulfates described from the Blue Lizard mine thus far contain essential Na, a remarkable fact considering that previously there was only...
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Journal Article
Published: 01 June 2017
European Journal of Mineralogy (2017) 29 (3): 529–533.
.... Kampf*, Jakub Plášil, Barbara P. Nash and Joe Marty *E-mail: [email protected] Structurally related to johannite, deliensite and plášilite Triclinic: P 1 ¯ ; structure determined a = 6.8362(2), b = 9.5127(3), c = 13.898(1) Å, α = 98.636(7), β = 93.713(7), γ = 110.102(8)° 6.80...
Journal Article
Published: 01 June 2017
Mineralogical Magazine (2017) 81 (3): 737–742.
..., Barbara P. Nash and Joe Marty Structurally related to johannite, deliensite and plášilite Triclinic: P 1¯; structure determined a  = 6.8362(2), b  = 9.5127(3), c  = 13.898(1) Å, α = 98.636(7), β = 93.713(7), γ = 110.102(8)° 6.80(100), 6.06(36), 5.75(62), 4.41(32), 3.404(56), 3.126(60...