Structural Peculiarities of Natural Ballas—Spheroidal Variety of Polycrystalline Diamond

Author:

Shiryaev Andrei A.12,Kaminsky Felix V.3ORCID,Pavlushin Anton D.4ORCID,Yapaskurt Vasily O.5,Zolotov Denis A.6ORCID,Averin Alexei A.1ORCID,Zhilicheva Olga M.2,Nickolsky Maximilian S.2ORCID,Kuznetsova Olga V.3

Affiliation:

1. Frumkin Institute of Physical Chemistry and Electrochemistry RAS, Leninsky Prospect 31 bld. 4, 119071 Moscow, Russia

2. Institute of Geology of Ore Deposits, Petrography, Mineralogy and Geochemistry RAS, Staromonetnii per. 35, 119017 Moscow, Russia

3. Vernadsky Institute of Geochemistry and Analytical Chemistry RAS, Kosygina st. 19, 119334 Moscow, Russia

4. Diamond and Precious Metal Geology Institute Siberian Branch RAS, Lenina st. 39, 677077 Yakutsk, Russia

5. Department of Geology, Lomonosov Moscow State University, Leninskie Gory 1, 119991 Moscow, Russia

6. FSRC “Crystallography and Photonics” RAS, Leninsky pr. 53, 119333 Moscow, Russia

Abstract

Ballas is a rare polycrystalline diamond variety characterized by a radially oriented internal structure and spheroidal outer shape. The origin of natural ballases remains poorly constrained. We present the results of a comprehensive investigation of two classic ballas diamonds from Brazil. External morphology was studied using SEM, high-resolution 3D optical microscopy, and X-ray tomography. Point and extended defects were examined on polished central plates using infra-red, photo- and cathodoluminescence spectroscopies, and electron back-scattering diffraction; information about nanosized inclusions was inferred from Transmission Electron Microscopy. The results suggest that fibrous diamond crystallites comprising ballas are split with pronounced rotation, causing concentric zoning of the samples. Pervasive feather-like luminescing structural features envelop single crystalline domains and most likely represent fibers with non-crystallographic branching. These features are enriched in N3 point defects. Twinning is not common. The nitrogen content of the studied samples reaches 700 at.ppm; its concentration gradually increases from the center to the rim. Annealing of the ballases took place at relatively high temperatures of 1125–1250 °C; the annealing continued even when the samples were fully grown, as suggested by the presence of the H4 nitrogen-related defects in the outer rim. Presumably, the ballas diamond variety was formed at high supersaturation but in conditions favoring a small growth kinetic coefficient. The carbon isotopic composition of the studied ballases (δ13C = −5.42, −7.11‰) belongs to the main mode of mantle-derived diamonds.

Funder

state assignments of DPMGI SB RAS

Federal Scientific Research Center

CKP FMI IPCE RAS

State assignment of IGEM RAS

Russian Academy of Sciences

Publisher

MDPI AG

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering

Reference40 articles.

1. Orlov, Y.L. (1987). Mineralogy of Diamond, John Wiley & Sons.

2. Five Brazilian diamonds;Kunz;Science,1884

3. Kukharenko, A.A. (1955). Diamonds of Ural, Gosgeoltekhizdat.

4. First carbonado and new balas finds in the Soviet Union;Kaminskiy;Dokl. Earth Sci. Sect.,1978

5. Ivanovskaya, I.N. (1983). Isotopic Composition of Diamonds Related to the Problem of Their Sources. [Ph.D. Thesis, GEOKHI]. (In Russian).

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