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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Solvated electrons: electron paramagnetic studies of solutions of lithium in ethylamine
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Solvated electrons: electron paramagnetic studies of solutions of lithium in ethylamine

机译:溶剂化电子:乙胺中锂溶液的电子顺磁研究

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Lithium metal dissolves in ethylamine to give stable blue solutions the EPR spectra of which showed the presence of a singlet assigned to solvated electrons, together with a nine-line spectrum assigned to Li-solv(+)-e(solv)(-) ion pairs. The hyperfine splitting of ca. 2.5 G is assigned to four equivalent N-14 nuclei. There is no detectable coupling to lithium nuclei. In the region of 50%, diglyme there is extensive displacement of two of the four amine ligands. Thus, in addition to the solvated electron centres, two ion pairs were detected, one showing hyperfine coupling to four N-14 nuclei and one to two N-14 nuclei. The hyperfine splitting remained constant at ca. 2.5 G. This result strongly supports a model in which it is the lithium ligands that give rise to coupling in the ion pairs, The diglyme displaces two amines at a time. There was no increase in the singlet, so the displacement of the second pair of amine ligands is not favourable. [References: 13]
机译:金属锂溶解在乙胺中,得到稳定的蓝色溶液,其EPR谱显示存在分配给溶剂化电子的单线态,以及分配给Li-solv(+)-e(solv)(-)离子的九线谱对。 ca的超细分裂2.5 G分配给四个等效的N-14核。没有可检测到的与锂核的偶联。在二甘醇二甲醚的50%区域中,四个胺配体中的两个被大量置换。因此,除了溶剂化的电子中心外,还检测到两个离子对,一个离子对显示与四个N-14核和一到两个N-14核的超精细偶联。超细分裂保持恒定在约。 2.5G。这一结果有力地支持了其中锂配体引起离子对偶合的模型。二甘醇二甲醚一次取代了两种胺。单重态没有增加,因此第二对胺配体的取代是不利的。 [参考:13]

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