Sheldrickite (original) (raw)

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Sheldrickite
General
Category carbonates
Formula(repeating unit) NaCa3(CO3)2F3·(H2O)
IMA symbol Sdk[1]
Strunz classification V/C.06-27
Dana classification 16a.3.11.1
Crystal system Trigonal
Unit cell a = 6.726 Å; c = 15.05 Å; Z = 3
Identification
Formula mass 338.25 gm
Color colorless to white
Crystal habit Aggregates of blocky twinned crystals, radiating thin flakes and fibrous masses to 2mm.
Twinning By reflection on {001}
Cleavage parting on [001] good
Fracture uneven
Tenacity Brittle
Mohs scale hardness 3
Luster vitreous to silky
Streak white
Specific gravity 2.86
Density 2.86 g/cm3
Optical properties Semitransparent
References [2][3][4]

Sheldrickite is a sodium calcium carbonate fluoride mineral, named in honor of George M. Sheldrick, former Professor of Crystallography at the University of Göttingen in Germany.[3] Sheldrick is the creator of SHELLX computer program widely used for the analysis of crystal structures.[3] Determination of the structure of this mineral required the software's capability of handling twinned crystals.[3]

Sheldrickite is a rare mineral found in Mont Saint-Hilaire, Canada.[2] Mont Saint-Hilaire is an alkaline intrusive complex and one of the ten Monteregian Hills.[2] A series of plutons is aligned along the St. Lawrence Valley for almost 150 km eastward from Oka to Megantic. Sheldrickite is closely associated with shortite (Na2Ca2(CO3)), with the crystals being found in a cavity between shortite crystals.[2] Sheldrickite also occurs as flakes in thin seams between crystals of shortite.[2] Sheldrickite is thought to be formed in a late-stage hydrothermal infilling.[2] The associated species of Sheldrickite include pectolite, microcline, arfvedsonite, aegirine, polylithionite, calcite, fluorite and minor molybdenite, leucosphenite, thenardite, thermonatrite, sphalerite, galena, schairerite and kogarkoite.[2]

Physical and optical properties

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Sheldrickite has 2 distinct habits, one occurs as a 1x1x2 mm aggregate of blocky twined crystals with 0.1x0.1x0.1 mm individuals.[2] The second habit occurs as a radiating thin white silky flakes to fibrous masses up to 2 mm wide.[2] Each habit was established as the same species by X-ray diffraction, infrared spectroscopy, and electron-microprobe data. This mineral is colorless to white, it has a white streak and a vitreous luster.[2] It has a brittle uneven fracture and has good {001} parting.[2] It has no fluorescence and has a Mohs hardness of 3, and a density of 2.86 +-0.04 g/cm2.[2]

Sheldrickite is Trigonal-pyramidal with the space group being P32. This mineral has an axial ratio of 1:2.24025, with cell dimensions of a = 6.718 Å, c = 15.05 Å, Z = 3 Å; V = 588.23 Å.[4] The precession photographs show sheldrickite to be hexagonal with a diffraction symmetry of 6/mmm, with space-group choices P6222 and P6422.[2] After the solution of the crystal structure, it was shown that the actual symmetry of sheldrickite is trigonal, space group P32 and the pseudohexagonal symmetry is due to merohedral twinning.[2]

Chemical composition

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Oxide wt% Range
Na2O 6.80 6.80-9.16
CaO 35.55 35.55-49.74
H2O .6 .6-5.33
CO2 7.10 7.10-26.02
Oxygen 33.11 -
Fluorine 16.85 -
Total 100 100

[4]

The structure of sheldrickite has four large-cation sites, but only two distinct types of polyhedral.[2] The Sodium (Na) polyhedron, with its 8-fold coordination, fits the compressed octahedron that is modified by the removal of one edge.[2] The compressed axis corresponds to the Na-F bonds, where the removed edge results in the four longer bonds in the polyhedron.[2] Each of these three Calcium (Ca) sites has a similar stereochemistry and a similar polyhedron, in the nine-fold coordination.[2] The polyhedron fits within the irregular trigonal prism, with the three Fluorine (F) atoms defining the equatorial plane and the other six ligands and the upper and lower face of the prism.[2]The crystal structure of sheldrickite is layered on (001).[2] In sheldrickite, there are two layers of different composition: (1) Na(CO3)2·H2O, and (2) CaF. The pseudo-m planes are positioned through the Na(CO3)2·H2O layers, and the pseudo-2-fold axis along [100] is at 0,0,0.[2] The carbonate layer is the mixed-layer type and the standing on end (CO3) groups are not in a separate layer but occur with the cations and H2O groups.[2]Sheldrickite structure is a combination of the bastnäsite - (Ce) structure with segregated large-cation layers and (CO3) layers, and the cebaite - (Ce) structure with integrated large-cation and (CO3) groups in the same layer.[2] Sheldrickite has a segregated large-cation layer and an integrated large cation - (H2O) - (CO3) layer.[2]

  1. ^ Warr, L.N. (2021). "IMA–CNMNC approved mineral symbols". Mineralogical Magazine. 85 (3): 291–320. Bibcode:2021MinM...85..291W. doi:10.1180/mgm.2021.43. S2CID 235729616.
  2. ^ a b c d e f g h i j k l m n o p q r s t u v w x Grice, J.D., et al., 1997, Sheldrickite, a new sodium-calcium-fluorocarbonate mineral species from Mont Saint-Hilaire, Quebec: The Canadian Mineralogist, Vol. 35, pp. 181-187, http://rruff.info/doclib/cm/vol35/CM35_181.pdf
  3. ^ a b c d "Sheldrickite".
  4. ^ a b c "Sheldrickite Mineral Data".