Standard

Olgafrankite, Ni3Ge, a new mineral, the carrier of siderophile germanium in reduced systems. / Верещагин, Олег Сергеевич; Хмельницкая, Майя Олеговна; Копылова, Альбина; Соловьева, Юлия; Кржижановская, Мария Георгиевна; Касаткин, Анатолий; Горелова, Людмила Александровна; Власенко, Наталия Сергеевна; Бритвин, Сергей Николаевич.

In: American Mineralogist, Vol. 110, No. 10, 01.10.2025, p. 1640–1648.

Research output: Contribution to journalArticlepeer-review

Harvard

APA

Vancouver

Author

BibTeX

@article{8b361901876a4104b6163ae89daff4cf,
title = "Olgafrankite, Ni3Ge, a new mineral, the carrier of siderophile germanium in reduced systems",
abstract = "Germanium is a classic trace element that rarely forms its own minerals but plays a significant role in geochemical and cosmochemical classification schemes. The geochemical behavior of this element is very contrasting, depending on the redox environment and sulfur activity in the geosystems. Siderophile germanium, in the form of native germanides, has been reported in several terrestrial and meteoritic occurrences, but the majority of these phases have been poorly characterized. In this study, we report the discovery of Ni3Ge, a new germanide mineral, named olgafrankite in honor of Prof. Olga Victorovna Frank-Kamenetskaya, Saint-Petersburg State University, Russia. The mineral, previously mentioned in the Rumuruti meteorite (the prototype of the R-type chondrites), has been discovered and studied in this work from terrestrial basalts of the Dzhaltul intrusion, the Norilsk ore region, Siberia, Russia. Olgafrankite crystals up to 5 × 7 μm in size were found within magnetite-pentlandite assemblages confined to massive centimeter-sized aggregates of native (telluric) iron. Other associated minerals are graphite, cohenite (Fe3C), Ge-bearing taenite (γ-Fe,Ni) (more than 1 wt.% Ge), tetrataenite (FeNi) and various sulfides. In reflected light, olgafrankite is bright white with a pink tint. The empirical formula of the mineral calculated on the basis of 4 atoms per formula unit is (Ni2.72Fe0.28Co0.01)=3.01(Ge0.97S0.02)=0.99. Electron backscattered diffraction analysis revealed that olgafrankite is cubic (space group Pm͞3m) and isostructural with synthetic Ni3Ge. Rietveld refinement of the powder X-ray diffraction pattern has confirmed the space group of olgafrankite and allowed to refine its unit-cell parameter, a = 3.5784(2) {\AA}. The mineral belongs to the perovskite supergroup, B-site-vacant single antiperovskites, auricupride subgroup. In terms of crystal structure and chemical composition, olgafrankite is a direct germanium analogue of nisnite, Ni3Sn, and carletonmooreite, Ni3Si. Here we demonstrate that the new germanide can be an important but still obscure germanium carrier in some reduced assemblages, in particular in iron- and stony-iron meteorites, where the well-known significant correlations between nickel and germanium may be accounted for by the presence of finely dispersed olgafrankite precipitates.",
author = "Верещагин, {Олег Сергеевич} and Хмельницкая, {Майя Олеговна} and Альбина Копылова and Юлия Соловьева and Кржижановская, {Мария Георгиевна} and Анатолий Касаткин and Горелова, {Людмила Александровна} and Власенко, {Наталия Сергеевна} and Бритвин, {Сергей Николаевич}",
year = "2025",
month = oct,
day = "1",
doi = "10.2138/am-2024-9714",
language = "English",
volume = "110",
pages = "1640–1648",
journal = "American Mineralogist",
issn = "0003-004X",
publisher = "Mineralogical Society of America",
number = "10",

}

RIS

TY - JOUR

T1 - Olgafrankite, Ni3Ge, a new mineral, the carrier of siderophile germanium in reduced systems

AU - Верещагин, Олег Сергеевич

AU - Хмельницкая, Майя Олеговна

AU - Копылова, Альбина

AU - Соловьева, Юлия

AU - Кржижановская, Мария Георгиевна

AU - Касаткин, Анатолий

AU - Горелова, Людмила Александровна

AU - Власенко, Наталия Сергеевна

AU - Бритвин, Сергей Николаевич

PY - 2025/10/1

Y1 - 2025/10/1

N2 - Germanium is a classic trace element that rarely forms its own minerals but plays a significant role in geochemical and cosmochemical classification schemes. The geochemical behavior of this element is very contrasting, depending on the redox environment and sulfur activity in the geosystems. Siderophile germanium, in the form of native germanides, has been reported in several terrestrial and meteoritic occurrences, but the majority of these phases have been poorly characterized. In this study, we report the discovery of Ni3Ge, a new germanide mineral, named olgafrankite in honor of Prof. Olga Victorovna Frank-Kamenetskaya, Saint-Petersburg State University, Russia. The mineral, previously mentioned in the Rumuruti meteorite (the prototype of the R-type chondrites), has been discovered and studied in this work from terrestrial basalts of the Dzhaltul intrusion, the Norilsk ore region, Siberia, Russia. Olgafrankite crystals up to 5 × 7 μm in size were found within magnetite-pentlandite assemblages confined to massive centimeter-sized aggregates of native (telluric) iron. Other associated minerals are graphite, cohenite (Fe3C), Ge-bearing taenite (γ-Fe,Ni) (more than 1 wt.% Ge), tetrataenite (FeNi) and various sulfides. In reflected light, olgafrankite is bright white with a pink tint. The empirical formula of the mineral calculated on the basis of 4 atoms per formula unit is (Ni2.72Fe0.28Co0.01)=3.01(Ge0.97S0.02)=0.99. Electron backscattered diffraction analysis revealed that olgafrankite is cubic (space group Pm͞3m) and isostructural with synthetic Ni3Ge. Rietveld refinement of the powder X-ray diffraction pattern has confirmed the space group of olgafrankite and allowed to refine its unit-cell parameter, a = 3.5784(2) Å. The mineral belongs to the perovskite supergroup, B-site-vacant single antiperovskites, auricupride subgroup. In terms of crystal structure and chemical composition, olgafrankite is a direct germanium analogue of nisnite, Ni3Sn, and carletonmooreite, Ni3Si. Here we demonstrate that the new germanide can be an important but still obscure germanium carrier in some reduced assemblages, in particular in iron- and stony-iron meteorites, where the well-known significant correlations between nickel and germanium may be accounted for by the presence of finely dispersed olgafrankite precipitates.

AB - Germanium is a classic trace element that rarely forms its own minerals but plays a significant role in geochemical and cosmochemical classification schemes. The geochemical behavior of this element is very contrasting, depending on the redox environment and sulfur activity in the geosystems. Siderophile germanium, in the form of native germanides, has been reported in several terrestrial and meteoritic occurrences, but the majority of these phases have been poorly characterized. In this study, we report the discovery of Ni3Ge, a new germanide mineral, named olgafrankite in honor of Prof. Olga Victorovna Frank-Kamenetskaya, Saint-Petersburg State University, Russia. The mineral, previously mentioned in the Rumuruti meteorite (the prototype of the R-type chondrites), has been discovered and studied in this work from terrestrial basalts of the Dzhaltul intrusion, the Norilsk ore region, Siberia, Russia. Olgafrankite crystals up to 5 × 7 μm in size were found within magnetite-pentlandite assemblages confined to massive centimeter-sized aggregates of native (telluric) iron. Other associated minerals are graphite, cohenite (Fe3C), Ge-bearing taenite (γ-Fe,Ni) (more than 1 wt.% Ge), tetrataenite (FeNi) and various sulfides. In reflected light, olgafrankite is bright white with a pink tint. The empirical formula of the mineral calculated on the basis of 4 atoms per formula unit is (Ni2.72Fe0.28Co0.01)=3.01(Ge0.97S0.02)=0.99. Electron backscattered diffraction analysis revealed that olgafrankite is cubic (space group Pm͞3m) and isostructural with synthetic Ni3Ge. Rietveld refinement of the powder X-ray diffraction pattern has confirmed the space group of olgafrankite and allowed to refine its unit-cell parameter, a = 3.5784(2) Å. The mineral belongs to the perovskite supergroup, B-site-vacant single antiperovskites, auricupride subgroup. In terms of crystal structure and chemical composition, olgafrankite is a direct germanium analogue of nisnite, Ni3Sn, and carletonmooreite, Ni3Si. Here we demonstrate that the new germanide can be an important but still obscure germanium carrier in some reduced assemblages, in particular in iron- and stony-iron meteorites, where the well-known significant correlations between nickel and germanium may be accounted for by the presence of finely dispersed olgafrankite precipitates.

UR - https://www.mendeley.com/catalogue/a64e018f-b9b7-3636-866e-05cd3e7e8701/

U2 - 10.2138/am-2024-9714

DO - 10.2138/am-2024-9714

M3 - Article

VL - 110

SP - 1640

EP - 1648

JO - American Mineralogist

JF - American Mineralogist

SN - 0003-004X

IS - 10

ER -

ID: 132625716