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Solvation Effects on the Structure and Stability of Alkali Metal Carbenoids

机译:溶剂化对碱金属羧丙基甲骨质结构和稳定性的影响

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摘要

s-Block metal carbenoids are carbene synthons and applied in a myriad of organic transformations. They exhibit a strong structure-activity relationship, but this is only poorly understood due to the challenging high reactivity and sensitivity of these reagents. Here, we report on systematic VT and DOSY NMR studies, XRD analyses as well as DFT calculations on a sulfoximinoyl-substituted model system to explain the pronounced solvent dependency of the carbenoid stability. While the sodium and potassium chloride carbenoids showed high stabilities independent of the solvent, the lithium carbenoid was stable at room temperature in THF but decomposed at -10 degrees C in toluene. These divergent stabilities could be explained by the different structures formed in solution. In contrast to simple organolithium reagents, the monomeric THF-solvate was found to be more stable than the dimer in toluene, since the latter more readily forms direct Li/Cl interactions which facilitate decomposition via alpha-elimination.
机译:s-嵌段金属卡宾是卡宾合成子,用于多种有机转化。它们表现出强烈的结构-活性关系,但由于这些试剂具有挑战性的高反应性和灵敏度,人们对此知之甚少。在这里,我们报告了系统的VT和DOSY NMR研究、XRD分析以及磺酰亚胺取代模型系统的DFT计算,以解释卡宾稳定性的明显溶剂依赖性。虽然氯化钠和氯化钾碳烯显示出与溶剂无关的高稳定性,但锂碳烯在室温下在THF中稳定,但在-10℃下在甲苯中分解。这些不同的稳定性可以用溶液中形成的不同结构来解释。与简单的有机锂试剂相比,发现单体THF溶剂化物在甲苯中比二聚体更稳定,因为后者更容易形成直接的Li/Cl相互作用,通过α消除促进分解。

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