Briartite

Cu2FeGeS4
IMA status
  • Approved
IMA symbol
Btt
Discovered
1965
Also known as
  • IMA1965-018

Where it forms, where it's found

Geological setting

Inclusions in Ge bearing minerals

Type locality
Kipushi Mine
  1. Kipushi
  2. Kipushi Territory
  3. Haut-Katanga
  4. DR Congo

-11.7658°, 27.2334°

11recorded occurrences
Source · OpenStreetMap

Physical

Hardness
123456789103.5 – 4.5/ 10 MOHS
  1. 1Talc
  2. 2Gypsum
  3. 3Calcite
  4. 4Fluorite
  5. 5Apatite
  6. 6Orthoclase
  7. 7Quartz
  8. 8Topaz
  9. 9Corundum
  10. 10Diamond
Transparency
Opaque
Colour
Gray to gray blue
Density
4.337 g/cm³

Optical

Optical colour
Gray to gray-blue
Anisotropism
weak in air, distinct in oil
Tropism
Anisotropic
Reflectance R%
(23.4) 400, (24.2) 420, (25.0) 440, (25.7) 460, (26.4) 480, (27.0) 500, (27.4) 520, (27.6) 540, (27.5) 560, (27.2) 580, (26.8) 600, (26.0) 620, (25.0) 640, (23.8) 660, (22.5) 680, (21.2) 700
Reflected-light panel
25.4 %isotropic · single curve
Specimen sRGB 185, 133, 69
White reference100 % reflector under same lamp
Anisotropism
weak in air, distinct in oil
Reflected colour
Gray to gray-blue

Crystallography

Crystal system
Tetragonal
Cell parameters
a = 5.32(1) Å · c = 10.51(1) Å
Z
2
Morphology

Small grains

Twinning

Polysynthetic

Type-locality form

Grains, mostly 0.1-0.3 mm, up to a max of 2 mm.

Comment

Point Group: 4mm or _4m2.; Space Group: I41md or I_4d2

Crystal structure

Chemical composition

Constituent elements
Mass composition breakdown
ElementAtoms At. mass g/mol Mass g/molMass share
16SSulfurSulfur432.060128.240
33.41%
29CuCopperCopper263.546127.092
33.11%
32GeGermaniumGermanium172.63072.630
18.93%
26FeIronIron155.84555.845
14.55%
Total383.807100.00%

Mass share = atoms × atomic mass ÷ molar mass × 100

From IMA formula

Impurities
  • Ga
  • Sn

Synonyms

  • IMA1965-018

In other languages

German
Briartit · IMA 1965-018
Spanish
Briartita
Italian
Briartite
Japanese
ブリアル鉱
Chinese
灰锗矿
Arabic
بريارتيت

Classification

Strunz
10th ed.

2.KA.10

  • 2Sulfides and SulfosaltsClass
  • 2.KSulfarsenates, SulfantimonatesDivision
  • 2.KASulfarsenates with (As,Sb)S4 tetrahedraGroup
  • 2.KA.10BriartiteSpecies
Dana
8th ed.

02.09.02.03

  • 02SulfidesClass
  • 02.09AmBnXp, with (m+n):p = 1:1Type
  • 02.09.02Stannite Group (Tetragonal: I-42m) A2BCS typeGroup
  • 02.09.02.03BriartiteSpecies
CIM

6.2.2

  • 6Sulphosalts - Sulphostannates, Sulphogermanates,Sulpharsenates, Sulphantimonates, Sulphovanadates and SulphohalidesClass
  • 6.2SulphogermanatesGroup
  • 6.2.2BriartiteSpecies

Group, growth & confusion

Literature, links & citation

Citations
  1. 1965Francotte, J.; Moreau, Jules; Ottenburgs, Raoul; Lévy, Claude (1965) La briartite, Cu2(Fe,Zn)GeS4, une nouvelle espèce minérale. Bulletin de la Société française de Minéralogie et de Crystallographie, 88 (3). 432-437 doi:10.3406/bulmi.1965.5876DOI: 10.3406/bulmi.1965.5876
  2. 1966Fleischer, Michael (1966) New Mineral Names. American Mineralogist, 51 (11-12) 1815-1820
  3. 1967Lévy, C. (1967) Contribution a la minéralogie des sulfures de cuivre du type Cu3XS4. Mémoires du Bureau de Recherches Géologiques et Minières: 54: 1-178.
  4. 1968Viaene, W., Moreau, J. (1968) Contribution à l’étude de la germanite, de la renierite et de la briartite. Annales de la Société Géologique de Belgique: 91: 127-143.
  5. 1969Springer, G. (1969) Microanalytical investigations into germanite, renierite, briartite, and gallite. Neues Jahrbuch für Mineralogie, Monatshefte 1969: 435-441.
Cite this entry
@misc{mineral2026,
  author    = {Mineral Index editorial board},
  title     = {Briartite — Mineral Index},
  year      = {2026},
  url       = {https://mineralindex.org/minerals/briartite-773},
  note      = {Accessed 2026-05-11}
}