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Electron Solvation and the Unique Liquid Structure of a Mixed‐Amine Expanded Metal: The Saturated Li–NH3–MeNH2 System

机译:电子溶剂化和混合胺金属丝网的独特液体结构:饱和Li–NH3–MeNH2系统

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摘要

Metal–amine solutions provide a unique arena in which to study electrons in solution, and to tune the electron density from the extremes of electrolytic through to true metallic behavior. The existence and structure of a new class of concentrated metal‐amine liquid, Li–NH3–MeNH2, is presented in which the mixed solvent produces a novel type of electron solvation and delocalization that is fundamentally different from either of the constituent systems. NMR, ESR, and neutron diffraction allow the environment of the solvated electron and liquid structure to be precisely interrogated. Unexpectedly it was found that the solution is truly homogeneous and metallic. Equally surprising was the observation of strong longer‐range order in this mixed solvent system. This is despite the heterogeneity of the cation solvation, and it is concluded that the solvated electron itself acts as a structural template. This is a quite remarkable observation, given that the liquid is metallic.
机译:金属-胺溶液提供了一个独特的领域,可以在其中研究溶液中的电子,并调节电子密度,从电解的极限到真正的金属行为。提出了一种新型的浓金属胺液体Li–NH3–MeNH2的存在和结构,其中混合溶剂产生一种新型的电子溶剂化和离域化,与任何一种组成体系都有根本的不同。 NMR,ESR和中子衍射可精确询问溶剂化电子和液体结构的环境。出乎意料的是,发现溶液确实是均质的和金属的。同样令人惊讶的是,在这种混合溶剂系统中观察到了较强的长程有序。尽管存在阳离子溶剂化的异质性,但是可以得出结论,溶剂化的电子本身起结构模板的作用。考虑到液体是金属,这是一个非常了不起的观察。

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