Empirical bond-strength–bond-length curves for oxides

共价键 债券定单 粘结强度 离子键合 价(化学) 六重键 粘结长度 氢键 单一债券 离子 协调数 键能 Atom(片上系统) 三键 化学键 双键 化学 结晶学 分子 有机化学 群(周期表) 晶体结构 图层(电子) 胶粘剂 计算机科学 高分子化学 嵌入式系统
作者
I. D. Brown,R. D. Shannon
出处
期刊:Acta crystallographica [International Union of Crystallography]
卷期号:29 (3): 266-282 被引量:1377
标识
DOI:10.1107/s0567739473000689
摘要

Bond-strength-bond-length relationships for bonds between oxygen and H+, Li+, Be2+, B3+, Na+, Mg2+, Al3+, Si4+, P5+, S6+, K+, Ca2+, Sc3+, Ti4+, V5+, Cr6+, Mn2+, Fe3+, Fe2+, Co2+, Cu2+, Zn2+, Ga3+, Ge4+ and As5+ have been derived by requiring that the sums of the bond strengths around the cations be equal to their valence in 417 crystals whose structures have been accurately determined. The relationship is of the form s = (R/R0)-N where s = bond strength, R = bond length and R0 and N are fitted constants. It is further shown that all ions with an isoelectronic core can be fitted by a single pair of parameters, R0 and N, that are independent of the ionic character of the bond and the coordination number of the cation. The resulting bond strengths have the property that they are directly related to the covalent character of the bond and that their sum around each atom is, on average, within about 5% of its valence. The bond-strength-bond-length curves are particularly useful in accounting for bonding in cases where the coordination is very distorted (e.g. Na+, Cu2+ and V5+). They can also be used to predict the positions of hydrogen atoms, to analyze for different oxidation states and site occupancies, to calculate ionic radii and to provide an indication of the correctness of crystal structure determinations.
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