Relationship between bond valence and bond softness of alkali halides and chalcogenides

被引:257
作者
Adams, S [1 ]
机构
[1] Univ Gottingen, Abt Kristallog, GZG, D-37077 Gottingen, Germany
关键词
D O I
10.1107/S0108768101003068
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Established bond-valence parameter tables rely on the assumption that the bond-valence sum of a central atom is fully determined by interactions to atoms in its first coordination shell. In this work the influence of higher coordination shells is tested in detail for bonds between lithium and oxygen. It is demonstrated that the sum of the weak interactions with atoms of the second coordination shells significantly contributes to the valence sum and should therefore not be neglected. Since the independent refinement of the two parameters R-0 and b is hardly possible from the limited range of bond lengths occurring in the first coordination shell, the restriction of bond-valence sums to contributions from nearest neighbours implicated another far-reaching simplification: the postulation of a universally fixed value of the bond-valence parameter b which characterizes the shape of the bond-valence pseudopotential for the respective atom pair. However, recent more sophisticated applications of the bond-valence concept, e.g. to model ion-transport pathways in solid electrolytes, demand sensible estimates of the bond-valence sums for mobile ions not only at their equilibrium sites but also at interstitial sites and bottle-necks of transport pathways. Calculations of bond valences at these non-equilibrium sites require the knowledge of the actual shape of the bond-valence pseudopotential. A systematic route to a more realistic estimate of b for alkali halides and chalcogenides is developed in this work from an empirical correlation between b and the absolute softnesses of the interacting particles.
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页码:278 / 287
页数:10
相关论文
共 40 条
[1]   Migration pathways in Ag-based superionic glasses and crystals investigated by the bond valence method [J].
Adams, S ;
Swenson, J .
PHYSICAL REVIEW B, 2001, 63 (05)
[2]   Determining ionic conductivity from structural models of fast ionic conductors [J].
Adams, S ;
Swenson, J .
PHYSICAL REVIEW LETTERS, 2000, 84 (18) :4144-4147
[3]   PROTON ORDERING IN THE PEIERLS-DISTORTED HYDROGEN MOLYBDENUM BRONZE H0.33MOO3 - STRUCTURE AND PHYSICAL-PROPERTIES [J].
ADAMS, S ;
EHSES, KH ;
SPILKER, J .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1993, 49 :958-967
[4]  
ADAMS S, 2001, UNPUB
[5]   A SCALE OF ELECTRONEGATIVITY BASED ON ELECTROSTATIC FORCE [J].
ALLRED, AL ;
ROCHOW, EG .
JOURNAL OF INORGANIC & NUCLEAR CHEMISTRY, 1958, 5 (04) :264-268
[6]  
Bader R. F. W., 1990, INT SERIES MONOGRAPH, V22
[7]   BOND-VALENCE PARAMETERS FOR SOLIDS [J].
BRESE, NE ;
OKEEFFE, M .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1991, 47 :192-197
[8]  
Brown I.D., 1981, STRUCTURE BONDING CR, P1
[9]   CHEMICAL AND STERIC CONSTRAINTS IN INORGANIC SOLIDS [J].
BROWN, ID .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1992, 48 :553-572
[10]   Influence of chemical and spatial constraints on the structures of inorganic compounds [J].
Brown, ID .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 1997, 53 :381-393