Abstract
Rotemite, Ca4Cr2(OH)12Cl2·4H2O, is a newly discovered mineral and the first Cr-bearing member of the hydrocalumite group within the hydrotalcite supergroup. The new mineral is a trigonal chromium analog of both hydrocalumite and its synthetic counterpart, Friedel's salt, representing a large family of novel compounds of lamellar/layered double hydroxides (LDH). This work presents the first comprehensive study of a Ca, Cr-bearing compound within the LDH family. Rotemite was discovered in pyrometamorphic rocks of the Hatrurim Complex, Israel. It forms tiny hexagonal platelet-shaped crystals that appear pale bluish-violet (daylight) to pinkish-violet (artificial light), depending on the type of illumination. The streak is pale light-purple. Optically, rotemite is negatively uniaxial with ω = 1.565(2), ε = 1.544(2) (λ = 589 nm). It has a hardness of 2.5–3 on the Mohs scale. The crystals exhibit perfect cleavage on {0001}. The electron microprobe analyses indicated the empirical formula of (Ca3.94Sr0.01)∑3.95(Cr3+1.47Al0.52Fe3+0.05)∑2.04(OH)12[Cl1.68(OH)0.32(SO4)0.01]∑2.01·4H2O. The calculated density, based on the empirical formula and unit cell parameters obtained from single-crystal X-ray diffraction data, is 2.18 g/cm3. Single-crystal X-ray diffraction measurements have revealed that rotemite represents a 6-layered polytype with trigonal symmetry (R3¯c) and unit cell parameters: a = 5.7944(2) Å, c = 46.69(4) Å, V = 1357.7(10) Å3. The final structural model converged to R1 = 0.0866. The structure consists of hydrocalumite-type layers [Ca4(Cr,Al)2(OH)12(H2O)4]2+ with intercalated Cl− ions. Raman spectra of rotemite are characterized by a prominent band at ∼525 cm−1, typical of LDH compounds. Polarized Raman spectroscopy revealed that signals from O[sbnd]H stretching vibrations at 3441–3442 cm−1 and 3609–3612 cm−1 strongly depend on the orientation of the crystal relative to the polarization of the incident laser beam. This indicates both an ordered arrangement of water molecules and a perpendicular arrangement of O[sbnd]H bonds within the hydrocalumite layers, respectively. The origin of rotemite and other Cr3+-bearing minerals is discussed, along with the possible role of the [Cr(OH)6]3− anion in their formation.
| Original language | English |
|---|---|
| Article number | 108002 |
| Journal | Applied Clay Science |
| Volume | 278 |
| DOIs | |
| State | Published - 15 Dec 2025 |
Keywords
- Cr-hydrocalumite
- Friedel's salt
- Hydrocalumite
- Lamellar/layered double hydroxide (LDH)
- Polarized Raman spectroscopy
- Single-crystal X-ray diffraction
ASJC Scopus subject areas
- Water Science and Technology
- Soil Science
- Geology
- Geochemistry and Petrology
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