FIRST-PRINCIPLES STUDY OF (MGH2SIO4) • N(MG2SIO4) HYDROUS OLIVINE STRUCTURES. I. CRYSTAL STRUCTURE MODELLING OF HYDROUS OLIVINE HY-2A (MGH2SIO4) • 3(MG2SIO4)

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dc.contributor.author Churakov S.V.
dc.contributor.author Wirth R.
dc.contributor.author Khisina N.R.
dc.contributor.author Urusov V.S.
dc.date.accessioned 2022-02-15T07:16:12Z
dc.date.available 2022-02-15T07:16:12Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=13425979
dc.identifier.citation Physics and Chemistry of Minerals, 2003, 30, 1, 1-11
dc.identifier.issn 0342-1791
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/35399
dc.description.abstract Recently, the Hy-2a hydrous olivine (MgH2 SiO4)·3(Mg2SiO4) occurring as nanometre-sized inclusions in mantle olivines has been found by TEM, and has been suggested to be a new DHMS phase (Khisina et al. 2001). A model of the crystal structure of Hy-2a has been proposed as a 2a-superstructure of olivine with one Me2+ -vacant octahedral layer in the (1 0 0) plane per Hy-2a unit cell (Khisina and Wirth 2002). In the present study the crystal structure of Hy-2a hydrous olivine is optimized by ab initio calculations. The aims of this study are: (1) verification of the suggested models of Hy-2a hydrous olivine structure; (2) calculation of the most stable configurations for Hy-2a structure with minimum static lattice energy, by assuming a possible formation of Me2+ vacancies in either M1 or M2 octahedral sites; (3) determination of the position of protons and hydrogen bonds in the Hy-2a structure. Several different possible configurations of the Hy-2a structure are optimized. The results support the idea of a stable olivine structure with ordered planar-segregated OH-bearing defects oriented parallel to (1 0 0). The data obtained indicate a preferred stability of the Hy-2a structure with the protons associated with M1 vacancies and bonded with O1 and O2 oxygen sites. The relative energy values of the optimized Hy-2a structure configurations correlate as a rule with the average shifts of atoms from their positions in pure forsterite structure.
dc.subject Hydrous olivine
dc.subject Water in nominally anhydrous minerals
dc.subject Hydrogen bonds
dc.subject Ab initio quantum mechanics structure refinement
dc.subject DHMS phases
dc.title FIRST-PRINCIPLES STUDY OF (MGH2SIO4) • N(MG2SIO4) HYDROUS OLIVINE STRUCTURES. I. CRYSTAL STRUCTURE MODELLING OF HYDROUS OLIVINE HY-2A (MGH2SIO4) • 3(MG2SIO4)
dc.type Статья


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