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yarzhemskiite

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Journal Article
Published: 13 December 2019
Mineralogical Magazine (2020) 84 (2): 335–342.
...Igor V. Pekov; Natalia V. Zubkova; Oksana V. Korotchenkova; Ilya I. Chaikovskiy; Vasiliy O. Yapaskurt; Nikita V. Chukanov; Dmitry I. Belakovskiy; Inna S. Lykova; Sergey N. Britvin; Dmitry Yu. Pushcharovsky Abstract The new mineral yarzhemskiite, K[B 5 O 7 (OH) 2 ]⋅H 2 O, was found in a halite...
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Yarzhemskiite crystal. Scanning electron microscopy (secondary electron) image.
Published: 13 December 2019
Fig. 2. Yarzhemskiite crystal. Scanning electron microscopy (secondary electron) image.
Image
The largest found crystals (lower row) and grains with irregular outlines of yarzhemskiite. Field of view, width: 4.2 mm. Photo: I.V. Pekov and A.V. Kasatkin.
Published: 13 December 2019
Fig. 1. The largest found crystals (lower row) and grains with irregular outlines of yarzhemskiite. Field of view, width: 4.2 mm. Photo: I.V. Pekov and A.V. Kasatkin.
Image
The crystal structure of yarzhemskiite in three projections with the outlined unit cell (a, b, c) and the fragment of the structure with shown H-bonding scheme (d). Key shown in (a).
Published: 13 December 2019
Fig. 4. The crystal structure of yarzhemskiite in three projections with the outlined unit cell ( a , b , c ) and the fragment of the structure with shown H-bonding scheme ( d ). Key shown in (a).
Image
Powder IR absorption spectra of (1) yarzhemskiite and (2) larderellite from its type locality, Larderello, Pisa Province, Tuscany, Italy (spectrum B91 in: Chukanov, 2014).
Published: 13 December 2019
Fig. 3. Powder IR absorption spectra of (1) yarzhemskiite and (2) larderellite from its type locality, Larderello, Pisa Province, Tuscany, Italy (spectrum B91 in: Chukanov, 2014 ).
Image
Infinite chain built by BO3 triangles and BO4 tetrahedra (a) and the layers formed by these chains and ten-fold K-centred polyhedra (b, c) in the structure of yarzhemskiite. The unit cell is outlined in (b, c). For legend see Fig. 4.
Published: 13 December 2019
Fig. 5. Infinite chain built by BO 3 triangles and BO 4 tetrahedra ( a ) and the layers formed by these chains and ten-fold K-centred polyhedra ( b , c ) in the structure of yarzhemskiite. The unit cell is outlined in ( b , c ). For legend see Fig. 4 .
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Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111
Image
Published: 13 December 2019
Table 1. Powder X-ray diffraction data (d in Å) of yarzhemskiite. I obs I calc * d obs d calc ** h k l 86 79 9 . 39 9 . 397 100 3 2 6.26 6.265 011 3 2 5.867 5.871 110 9 7 5.387 5.390 $\bar{1}$ 11 5 4 5.049 5.052 111