Delocalization-ratio analysis of 3-center bonding in position-space for closo-boranes and related systems: Approaching the styx picture and beyond

IF 3.4 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Journal of Computational Chemistry Pub Date : 2024-08-30 DOI:10.1002/jcc.27486
Frank R. Wagner
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Abstract

Closo-boron hydrides BnHn2− (n = 5–12) are a conceptually well understood class of compounds. For these and a few related prototype compounds, both the local and the global picture of 3-center bonding are extracted from position-space quantities based on the electron density and the pair density. For this purpose, three-center delocalization indices between quantum theory of atoms in molecules (QTAIM) atoms in position space are used to develop a consistent set of local bond and triangle, and global cluster delocalization ratios (DRs), which are quantitatively compared with conceptual Γ values derived from the styx code for each cluster. Combination of the cluster DRs with associated effective numbers of skeletal electron sharing (SES) for selected cluster surface edges, triangles, or the whole cluster yields effective styx type values describing the trend and even the size of the conceptual styx codes for closo-boranes BnHn2− and related systems with increasing cluster size n reasonably well. For nonuniform cluster topologies, the different vertex degrees are shown to cause systematic 3-center wise bond delocalization effects for the associated edges and triangles of different average vertex degrees. Extension of DR analysis beyond the styx type triangular cluster-surface bonding corresponds to a triangulation of multicentric bonding. The cluster-wise results keep indicating consistency with the mixed 2- and 3-center bonding approach. The successfully established chemical meaning of the local edge, triangle, and global cluster DRs and their associated SES values constitutes the basis for systematic investigations of mixed 2- and 3-center bonding scenarios in particular in intermetallic and related (endohedral) cluster compounds in the future.

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闭硼烷及相关体系位置空间中 3 心键的脱焦比分析:接近样式图及其他
近硼氢化物 BnHn2-(n = 5-12)是一类概念上很好理解的化合物。对于这些化合物和一些相关的原型化合物,可以根据电子密度和电子对密度从位置空间量中提取三中心键的局部和全局情况。为此,我们使用分子中原子量子理论(QTAIM)原子在位置空间中的三中心脱位指数来建立一套一致的局部键和三角形以及全局簇脱位比(DRs),并将其与根据 styx 代码得出的每个簇的概念 Γ 值进行定量比较。将簇DR与选定簇表面边缘、三角形或整个簇的相关有效骨架电子共享数(SES)相结合,可以得到有效的styx类型值,这些值合理地描述了闭硼烷BnHn2-及相关体系的概念styx代码的趋势和大小,簇尺寸n越大,这些值越大。对于非均匀簇拓扑结构,不同的顶点度会对相关边和不同平均顶点度的三角形产生系统的三中心键脱位效应。将 DR 分析扩展到样式类型的三角形集群-表面结合之外,对应于多中心结合的三角形。聚类结果与 2 中心和 3 中心混合键合方法保持一致。成功建立的局部边缘、三角形和整体簇 DR 及其相关 SES 值的化学含义,为今后系统研究混合 2 中心和 3 中心成键情况,特别是金属间和相关(内面)簇化合物的混合 2 中心和 3 中心成键情况奠定了基础。
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来源期刊
CiteScore
6.60
自引率
3.30%
发文量
247
审稿时长
1.7 months
期刊介绍: This distinguished journal publishes articles concerned with all aspects of computational chemistry: analytical, biological, inorganic, organic, physical, and materials. The Journal of Computational Chemistry presents original research, contemporary developments in theory and methodology, and state-of-the-art applications. Computational areas that are featured in the journal include ab initio and semiempirical quantum mechanics, density functional theory, molecular mechanics, molecular dynamics, statistical mechanics, cheminformatics, biomolecular structure prediction, molecular design, and bioinformatics.
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