Open Access
Crystallochemical Design of Huntite-Family Compounds
Тип публикации: Journal Article
Дата публикации: 2019-02-15
SCImago Q2
WOS Q2
БС2
SJR: 0.497
CiteScore: 5.4
Impact factor: 2.9
ISSN: 20734352, 01725076
Inorganic Chemistry
General Chemical Engineering
Condensed Matter Physics
General Materials Science
Краткое описание
Huntite-family nominally-pure and activated/co-activated LnM3(BO3)4 (Ln = La–Lu, Y; M = Al, Fe, Cr, Ga, Sc) compounds and their-based solid solutions are promising materials for lasers, nonlinear optics, spintronics, and photonics, which are characterized by multifunctional properties depending on a composition and crystal structure. The purpose of the work is to establish stability regions for the rare-earth orthoborates in crystallochemical coordinates (sizes of Ln and M ions) based on their real compositions and space symmetry depending on thermodynamic, kinetic, and crystallochemical factors. The use of diffraction structural techniques to study single crystals with a detailed analysis of diffraction patterns, refinement of crystallographic site occupancies (real composition), and determination of structure–composition correlations is the most efficient and effective option to achieve the purpose. This approach is applied and shown primarily for the rare-earth scandium borates having interesting structural features compared with the other orthoborates. Visualization of structures allowed to establish features of formation of phases with different compositions, to classify and systematize huntite-family compounds using crystallochemical concepts (structure and superstructure, ordering and disordering, isostructural and isotype compounds) and phenomena (isomorphism, morphotropism, polymorphism, polytypism). Particular attention is paid to methods and conditions for crystal growth, affecting a crystal real composition and symmetry. A critical analysis of literature data made it possible to formulate unsolved problems in materials science of rare-earth orthoborates, mainly scandium borates, which are distinguished by an ability to form internal and substitutional (Ln and Sc atoms), unlimited and limited solid solutions depending on the geometric factor.
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ГОСТ
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Kuzmicheva G. et al. Crystallochemical Design of Huntite-Family Compounds // Crystals. 2019. Vol. 9. No. 2. p. 100.
ГОСТ со всеми авторами (до 50)
Скопировать
Kuzmicheva G., Kaurova I. A., Rybakov V., Podbelskiy V. Crystallochemical Design of Huntite-Family Compounds // Crystals. 2019. Vol. 9. No. 2. p. 100.
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RIS
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TY - JOUR
DO - 10.3390/cryst9020100
UR - https://doi.org/10.3390/cryst9020100
TI - Crystallochemical Design of Huntite-Family Compounds
T2 - Crystals
AU - Kuzmicheva, Galina
AU - Kaurova, I. A.
AU - Rybakov, Victor
AU - Podbelskiy, Vadim
PY - 2019
DA - 2019/02/15
PB - MDPI
SP - 100
IS - 2
VL - 9
SN - 2073-4352
SN - 0172-5076
ER -
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BibTex (до 50 авторов)
Скопировать
@article{2019_Kuzmicheva,
author = {Galina Kuzmicheva and I. A. Kaurova and Victor Rybakov and Vadim Podbelskiy},
title = {Crystallochemical Design of Huntite-Family Compounds},
journal = {Crystals},
year = {2019},
volume = {9},
publisher = {MDPI},
month = {feb},
url = {https://doi.org/10.3390/cryst9020100},
number = {2},
pages = {100},
doi = {10.3390/cryst9020100}
}
Цитировать
MLA
Скопировать
Kuzmicheva, Galina, et al. “Crystallochemical Design of Huntite-Family Compounds.” Crystals, vol. 9, no. 2, Feb. 2019, p. 100. https://doi.org/10.3390/cryst9020100.
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