Abstract
Muthmannite, AuAgTe2, a rare gold-silver telluride was discovered in a sample from the historical mineralogical collection of the Naturhistorisches Museum of Vienna. The sample is from the gold-telluride deposit of Sacarîmb, Metaliferi Mountains, western Romania. Muthmannite occurs as anhedral grains up to 200 µm associated with large sylvanite crystals and does not show any inclusions or intergrowths of other minerals. The associated minerals are sylvanite, calaverite, and petzite, whereas the gangue mineral is quartz. Muthmannite is pale bronze in color and shows a gray-black streak. No cleavage was observed, the fracture is uneven, and the Vickers hardness (VHN15) is 186 kg/mm2. Muthmannite is grayish white in reflected light, with very low bireflectance and pleochroism. When observed near sylvanite it is darker and shows a gray color with a slightly bluish tint. Reflectance percentages for Rmin and Rmax were found to be 40.1, 40.8 (471.1 nm), 38.3, 38.6 (548.3 nm), 37.9, 38.3 (586.6 nm), and 37.7, 38.1 (652.3 nm), respectively. Muthmannite is monoclinic, space group P2/m, with the following unit-cell parameters: a = 5.124(2), b = 4.419(1), and c = 7.437(2) Å, β = 89.96(1)°, V = 168.4(4) Å3, and Z = 2. Electron microprobe analyses gave the chemical formula Au0.97Ag0.99Te2.03. The calculated density (from the ideal formula) is 11.04 g/cm3. The crystal structure was solved and reÞ ned to R = 5.52%. It is based on the NiAs-type structure, with a distorted hexagonal closest-packed array of Te2- atoms with Au3+ and Ag+ occupying all the octahedral sites. The crystal-chemical relationships with other gold-silver tellurides are outlined.
© 2015 by Walter de Gruyter Berlin/Boston
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Articles in the same Issue
- The origin of the color of pearls in iridescence from nano-composite structures of the nacre
- “Invisible„ gold revealed: Direct imaging of gold nanoparticles in a Carlin-type deposit
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- Metasomatic formation of kosmochlor-bearing diopside in peridotite xenoliths from North Island, New Zealand
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- Hydroxyl ordering in igneous apatite
- Accommodation of the carbonate ion in apatite: An FTIR and X-ray structure study of crystals synthesized at 2–4 GPa
- Mg/Si ratios of aqueous fluids coexisting with forsterite and enstatite based on the phase relations in the Mg2SiO4-SiO2-H2O system
- The activity of silica, water, and the equilibration of intermediate and silicic magmas
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