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首页> 外文期刊>Angewandte Chemie >Dramatically Enhanced Solubility of Halide-Containing Organometallic Species in Diiodomethane: The Role of Solvent center dot center dot center dot Complex Halogen Bonding
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Dramatically Enhanced Solubility of Halide-Containing Organometallic Species in Diiodomethane: The Role of Solvent center dot center dot center dot Complex Halogen Bonding

机译:在二碘甲烷中显着增强了含卤素的有机金属物质的溶解度:溶剂中心点中心点中心点复合卤素键合的作用

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摘要

In the current study, we evaluated the solubility of a number of organometallic species and showed that it is noticeably improved in diiodomethane when compared to other haloalkane solvents. The better solvation properties of CH2I2 were associated with the substantially better sigma-hole-donating ability of this solvent, which results in the formation of uniquely strong solvent-(metal complex) halogen bonding. The strength of the halogen bonding is attenuated by the introduction of additional halogen atoms in the organometallic species owing to the competitive formation of more favourable intermolecular complex-complex halogen bonding. The exceptional solvation properties of diiodomethane and its inertness towards organometallic species make this solvent a good candidate for NMR studies, in particular, for the acquisition of spectra of insensitive spins.
机译:在目前的研究中,我们评估了许多有机金属种类的溶解度,并显示与其他卤代烷溶剂相比二碘甲烷中明显改善。 CH 2 I 2的溶剂化性质更好地与该溶剂的基本更好的Sigma-oppation能力相关,这导致形成唯一强的溶剂 - (金属络合物)卤素键合。 由于更有利的分子间复合卤素键合的竞争性形成,通过在有机金属物质中引入额外的卤素原子来衰减卤素键的强度。 二碘甲烷的特殊溶剂化性质及其对有机金属物质的惰性使得该溶剂是NMR研究的良好候选者,特别是用于获取不敏感旋转的光谱。

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