Structural Family of the CaMg[B2O5] Kurchatovite: Structure Features, Polytypical Complexity, DFT Analysis, and Comparative Crystal Chemistry of Divalent Cation Pyroborates
S. M. Aksenov, D. A. Banaru, A. M. Banaru, A. A. Antonov, N. A. Kabanova, A. N. Kuznetsov, E. L. Belokoneva, N. A. Yamnova, D. V. Deineko, N. A. Chervonnaya, N. V. Chukanov, V. A. Blatov
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引用次数: 0
Abstract
Natural and synthetic borates occupy a special place in the extensive class of polytypism-exhibiting layered inorganic compounds with modular structures. The present work presents a repeated modular analysis of kurchatovite and clinokurchatovite CaMg[B2O5] crystal structures using the OD formalism as well as a topological analysis of the geometry and complexity of their polytypes crystal structures which were optimized by quantum chemical methods. The polytypic nature of kurchatovite, clinokurchatovite, and SrCd[B2O5] structures is confirmed by the data obtained for these compounds. Theoretical IR spectra obtained for clinokurchatovite completely agree with the experimental ones. For polytypic structures, the IR spectrum can be used as a kind of empirical measure of structural complexity: the number of normal modes increases with decreasing symmetry and increasing number of vibrational degrees of freedom per unit cell. Comparative crystal chemical analysis reveals a symmetrical relationship between a large number of divalent \(M_{2}^{2+}[{{\text{B}}_{2}}{{\text{O}}_{5}}]\) pyroborates (M = Ca, Sr, Pb, Mg, Mn–Ni, Zn, Cd) which can be also combined into a single structural shimazakiite (Cd2[B2O5]) OD family consisting of three types of OD layers.
期刊介绍:
Journal is an interdisciplinary publication covering all aspects of structural chemistry, including the theory of molecular structure and chemical bond; the use of physical methods to study the electronic and spatial structure of chemical species; structural features of liquids, solutions, surfaces, supramolecular systems, nano- and solid materials; and the crystal structure of solids.