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Phenylselenolate Mercury Alkyl Compounds PhSeHgMe and PhSeHgEt: MolecularStructures Protolytic Hg–C Bond Cleavage and Phenylselenolate Exchange

机译:苯硒酸汞烷基化合物PhSeHgMe和PhSeHgEt:分子结构水解的汞-C键裂解和苯硒酸交换。

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摘要

The phenylselenolate mercury alkyl compounds, PhSeHgMe and PhSeHgEt, have been structurally characterized by X-ray diffraction, thereby demonstrating that both compounds are monomeric with approximately linear coordination geometries; the mercury centers do, nevertheless, exhibit secondary Hg•••Se intermolecular interactions that serve to increase the coordination number in the solid state. The ethyl derivative, PhSeHgEt, undergoes facile protolytic cleavage of the Hg–C bond to release ethane at room temperature, whereas PhSeHgMe exhibits little reactivity under similar conditions. Interestingly, the cleavage of the Hg–C bond of PhSeHgEt is also more facile than that of the thiolate analogue, PhSHgEt, which demonstrates that coordination by selenium promotes protolytic cleavage of the mercury-carbon bond. The phenylselenolate compounds PhSeHgR (R = Me, Et) also undergo degenerate exchange reactions with, for example, PhSHgR and RHgCl. In each case, the alkyl groups preserve coupling to the 199Hg nuclei, thereby indicating that the exchange process involves metathesis of the Hg–SePh/Hg–X groups rather than metathesis of the Hg–R/Hg–R groups.
机译:苯硒酸汞烷基化合物PhSeHgMe和PhSeHgEt在结构上已通过X射线衍射进行了表征,从而证明这两种化合物都是具有近似线性配位几何结构的单体。但是,汞中心确实表现出二次Hg•••Se分子间相互作用,从而增加了固态的配位数。乙基衍生物PhSeHgEt在室温下容易进行Hg–C键的蛋白水解裂解,释放出乙烷,而PhSeHgMe在相似条件下几乎没有反应性。有趣的是,PhSeHgEt的Hg-C键的裂解也比硫醇盐类似物PhSHgEt的裂解更容易,这表明硒的配位促进了汞-碳键的蛋白水解。苯硒酸酯化合物PhSeHgR(R = Me,Et)也与例如PhSHgR和RHgCl进行简并交换反应。在每种情况下,烷基均保持与 199 Hg核的偶联,从而表明交换过程涉及Hg–SePh / Hg–X基团的复分解,而不是Hg–R / Hg复分解。 –R组。

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