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Molecules mimicking atoms: monomers and dimers of alkali metal solvated electron precursors

机译:模拟原子:碱金属溶剂化电子前体的单体和二聚体

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Tetra-amino lithium and sodium complexes M(NH3)(4)(0,-) (M = Li, Na) have one or two electrons that occupy diffuse orbitals distributed chiefly outside the M(NH3)(4)(+) core. The lowest-energy 1s, 1p, and 1d orbitals follow Aufbau principles found earlier for beryllium tetra-ammonia complexes. Two ground state M(NH3)(4) complexes can bind covalently by coupling their 1s(1) electrons into a sigma-type molecular orbital. The lowest excited states of the [M(NH3)(4)](2) species are obtained by promoting one or two electrons from this sigma to other bonding or anti-bonding sigma and pi-type molecular orbitals. The electronic structure of solvated electron precursors provides insights into chemical bonding between super-atomic species that are present in concentrated alkali-metal-ammonia solutions.
机译:四氨基锂和钠络合物M(NH 3)(4)(4)(0, - )(M = Li,Na)具有一个或两个电子,其占据散射轨迹主要在M(NH 3)(4)(+)核外的岩石中分布 。 最低能量1S,1P和1D轨道跟随铍Tetra-氨复合物前面发现的Aufbau原理。 两个研磨态M(NH 3)(4)配合物可以通过将其1S(1)电子与Sigma型分子轨道偶联来共价结合。 通过将来自该Sigma的一个或两个电子促进到其他粘合或抗粘合的Sigma和Pi型分子轨道,通过促进一个或两个电子获得[m(NH3)(4)](2)种物种的最低激发态。 溶剂化电子前体的电子结构在浓碱金属 - 氨溶液中存在的超原子物质之间的化学键合提供了洞察力。

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