Mg 1– y Sc y Zn 2 : Limited Sc/Mg Alloying between Laves Phase MgZn 2 and ScZn 2 – What Drives ScZn 2 into a High‐Pressure Phase?
Author:
Affiliation:
1. Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, P. R. China
Publisher
Wiley
Subject
Inorganic Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/ejic.201100319
Reference43 articles.
1. Exploratory Synthesis: The Fascinating and Diverse Chemistry of Polar Intermetallic Phases†This article is based on J. D. Corbett’s address upon receipt of the 2008 American Chemical Society’s F. Albert Cotton Award in Synthetic Inorganic Chemistry sponsored by the F. Albert Cotton Endowment Fund.
2. The s−p Bonded Representatives of the Prominent BaAl4 Structure Type: A Case Study on Structural Stability of Polar Intermetallic Network Structures
3. Centric and Non-centric Ca3Au∼7.5Ge∼3.5: Electron-Poor Derivatives of La3Al11. Syntheses, Structures, and Bonding Analyses
4. Interpenetrating Polar and Nonpolar Sublattices in Intermetallics: The NaCd2 Structure
5. Crystal Structure and Magnetic Properties of the Compounds Yb(Zn,Al)~6 and YbZn~6
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1. Crystal structure, electronic structure and phase stability of the Cu2-xMxCd (M=Zn, Ga, Ge, Sn) pseudo-binary Laves phases: effect of valence electron concentration;Journal of Solid State Chemistry;2022-09
2. Cluster Self-Organization of Intermetallic Systems: New Precursor Cluster K65 = 0@3@20@42 for the Self-Assembly of the Sc96Mg8Zn600-cP704 Crystal Structure;Glass Physics and Chemistry;2022-04
3. Influence of Valence Electron Concentration on Laves Phases: Structures and Phase Stability of Pseudo-Binary MgZn2-xPdx;Zeitschrift für anorganische und allgemeine Chemie;2015-06-03
4. First-principles study of structural, electronic and thermodynamic properties of EuMg2 and EuMg2H6;Journal of Solid State Chemistry;2013-02
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