Structure variations within RSi2 and R 2Si3 silicides. Part II. Structure driving factors

Author:

Nentwich M.,Zschornak M.,Sonntag M.,Gumeniuk R.,Gemming S.,Leisegang T.,Meyer D. C.

Abstract

To gain an overview of the various structure reports on RSi2 and R 2 TSi3 compounds (R is a member of the Sc group, an alkaline earth, lanthanide or actinide metal, T is a transition metal), compositions, lattice parameters a and c, ratios c/a, formula units per unit cell, and structure types are summarized in extensive tables and the variations of these properties when varying the R or T elements are analyzed. Following the structural systematization given in Part I, Part II focuses on revealing the driving factors for certain structure types, in particular, the electronic structure. Here, concepts of different complexity are presented, including molecular orbital theory, the principle of hard and soft acids and bases, and a Bader analysis based on Density Functional Theory calculations for representatives of the reported structure types. The potential Si/T ordering in different structures is discussed. Additionally, the influences from intrinsic and extrinsic properties (e.g. elemental size and electronics as well as lattice parameters and structure type) are investigated on each other using correlation plots. Thermal treatment is identified as an important factor for the ordering of Si/T atoms.

Funder

European regional development fund

Federal Ministry of Education and Research

Helmholtz Excellence Network

Deutsche Forschungsgemeinschaft

Publisher

International Union of Crystallography (IUCr)

Subject

Materials Chemistry,Metals and Alloys,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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1. Griffiths-like behavior and magnetocaloric properties of rare-earth silicide Tb2Co0.8Si3.2;Journal of Physics: Condensed Matter;2024-02-15

2. Entropy-Assisted, Long-Period Stacking of Honeycomb Layers in an AlB2-Type Silicide;Journal of the American Chemical Society;2022-09-06

3. From the Ritter pile to the aluminum ion battery – Peter Paufler’s academic genealogy;Zeitschrift für Kristallographie - Crystalline Materials;2020-10-27

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