The Theoretical Investigation by QTAIM Approach to Chemical Bonding of a Di-Rhenium Bis(Triphenylphosphine) Carbonyl Cluster Containing Sulfuric and Hydrido Bridge: [Re2(CO)6(μ-S)(μ-H)(PPh3)2]

Ahlam Hassan, None Nadia Ezzat Al-kirbasee1, None Manal A. Mohammed Al-Jabery2, None Murtadha Hussein Hasan3, None Muhsen A. Muhsen Al-Ibadi4
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 The calculations showed that there were no bond critical points or identical bond paths between Re-Re in the core of the cluster. The electron density distribution was affected by the position of bridging hydride and sulfur atoms coordinated to Re-Re, which significantly affected the bonds between these transition metal atoms. However, the calculations did confirm the presence of a 6c–8e bonding interaction delocalized over HRe2SP2 in the cluster.
 The scientists found that the Re-H and Re-S bonds in this cluster exhibited typical closed-shell interactions, with small values for ρ(b) and Laplacian ∇2ρ(b) above zero and small positive values for total energy density H(b). Similarly, the bond interactions between phosphine metal atoms and the C atoms of the phenyl ring ligands showed properties similar to open-shell interactions in the QTAIM classification.","PeriodicalId":489104,"journal":{"name":"Journal of Kufa for Chemical Sciences","volume":"120 11","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-11-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Kufa for Chemical Sciences","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.36329/jkcm/2023/v2.i10.12211","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Scientists used the quantum theory of atoms in molecules (QTAIM) to calculate and interpret various electron density parameters for a di-rhenium bis(triphenylphosphine) carbonyl cluster containing sulfuric and hydrido bridge: [Re2(CO)6(μ-S)(μ-H)(PPh3)2]. They analyzed the bond critical points and compared them with data from previous organometallic system studies. The researchers were able to compare the topological processes of different atom-atom interactions based on these results. The calculations showed that there were no bond critical points or identical bond paths between Re-Re in the core of the cluster. The electron density distribution was affected by the position of bridging hydride and sulfur atoms coordinated to Re-Re, which significantly affected the bonds between these transition metal atoms. However, the calculations did confirm the presence of a 6c–8e bonding interaction delocalized over HRe2SP2 in the cluster. The scientists found that the Re-H and Re-S bonds in this cluster exhibited typical closed-shell interactions, with small values for ρ(b) and Laplacian ∇2ρ(b) above zero and small positive values for total energy density H(b). Similarly, the bond interactions between phosphine metal atoms and the C atoms of the phenyl ring ligands showed properties similar to open-shell interactions in the QTAIM classification.
含硫和氢氧桥[Re2(CO)6(μ-S)(μ-H)(PPh3)2]二铼双(三苯基膦)羰基团簇化学键的QTAIM理论研究
科学家们利用分子中原子的量子理论(QTAIM)计算并解释了含有硫和氢化物桥的二铼二(三苯基膦)羰基簇的各种电子密度参数:[Re2(CO)6(μ-S)(μ-H)(PPh3)2]。他们分析了键临界点,并将其与以前有机金属系统研究的数据进行了比较。基于这些结果,研究人员能够比较不同原子-原子相互作用的拓扑过程。 计算表明,团簇核心Re-Re之间不存在键临界点,也不存在相同的键路径。与Re-Re配位的桥接氢化物和硫原子的位置影响了电子密度分布,显著影响了过渡金属原子之间的键。然而,计算确实证实了6c-8e键相互作用在团簇HRe2SP2上的非定域存在。科学家们发现,这个团簇中的Re-H和Re-S键表现出典型的闭壳相互作用,ρ(b)和拉普拉斯∇2ρ(b)大于零的值很小,总能量密度H(b)的值很小。同样,在QTAIM分类中,磷化氢金属原子与苯基环配体的C原子之间的键相互作用也表现出类似于开壳相互作用的性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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