Crystal structure of Al5O3N3 (15R)
PBN-AR
Instytucja
Sieć Badawcza Łukasiewicz - Instytut Ceramiki i Materiałów Budowlanych
Informacje podstawowe
Główny język publikacji
angielski
Czasopismo
POWDER DIFFRACTION (25pkt w roku publikacji)
ISSN
0885-7156
EISSN
Wydawca
J C P D S-INT CENTRE DIFFRACTION DATA
DOI
URL
Rok publikacji
2017
Numer zeszytu
S1
Strony od-do
S2-S5
Numer tomu
32
Identyfikator DOI
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Autorzy
Słowa kluczowe
angielski
aluminium oxynitride
AlON
Al5O3N3
Streszczenia
Język
angielski
Treść
Having synthesised an AlON-bonded ceramic corundum material, Al5O3N3 (15R) polytype coexisting with α-Al2O3 was identified. The sample was prepared from an alumina-rich mixture of Al2O3 and AlN substrates and fired at 1650 °C in a nitrogen atmosphere. Using the X-ray external standard quantitative method, one of the reaction products, α-Al2O3, was quantified. From the remaining substrates the stoichiometric composition of the second phase was calculated. The applied method of crystal structure determination consisted of three stages. In the first stage, the Le Bail method of X-ray pattern decomposition was used for the extraction of Al5O3N3 (15R) diffraction lines from a two-phase diffractogram. The space group and unit-cell dimensions from the isostructural SiAl4O2N4 SiAlON phase, producing the same X-ray pattern, were used as input data. Next, the direct structure determination in real space was applied for initial structural model derivation, which was followed by Rietveld refinement. The solved crystal structure of Al5O3N3 (15R), except the stacking sequence, proved to be closely related to the structure of Al7O3N5 (21R) polytype. The Al5O3N3 (15R) is trigonal with space group R-3m, unit-cell dimensions a 0 = 3.0128 Å, c 0 = 41.8544 Å, and volume V = 329.00 Å3. The model of Al5O3N3 (15R) polytype structure has positional disordering in one of three (6c) Al sites, which leads to stacking faults in six tetrahedral layers. Every third tetrahedron from LR3 and LR4, LR8 and LR9, LR13 and L R14 layers is rotated by 180°.
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System-identifier
PX-5996d81cd5de3060dabd2acf
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