Structural study of phase transition in K2Zn2(SO4)3 langbeinite
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference14 articles.
1. Landolt-Börnstein III/16b,1982
2. Structural Study of Phase Transition in Langbeinite-Type K2Mn2(SO4)3Crystals
3. Structural Study of Phase Transition in K2Co2(SO4)3Crystals
4. Anomalous Change of X-Ray Diffraction Intensity of K2Mn2(SO4)3Near the Phase Transition Temperature
5. Formation of Stable Pinch Column in Focus Plasma
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1. Effects of Gd2O3 doping on the structure and the conduction mechanism of K2Mg2(SO4)3 langbeinite ceramics: A comparative study;Materials Science and Engineering: B;2021-03
2. Influence of tin substitution on negative thermal expansion of K2Zr2-xSnxP2SiO12 (x = 0 - 2) phosphosilicates ceramics;Ceramics International;2020-06
3. Two new phosphate langbeinites, Rb2YbTi(PO4)3and Rb2Yb0.32Ti1.68(PO4)3, investigated at 293 and 150 K;Acta Crystallographica Section C Crystal Structure Communications;2005-01-15
4. New phosphate langbeinites, K2 MTi(PO4)3 (M = Er, Yb or Y), and an alternative description of the langbeinite framework;Acta Crystallographica Section B Structural Science;2002-09-24
5. Phase transitions in K2Mn2(SO4)3studied by ESR and specific heat;Ferroelectrics;2000-02
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