Issue 36, 2021

Ground and excited states analysis of alkali metal ethylenediamine and crown ether complexes

Abstract

High-level electronic structure calculations are carried out to obtain optimized geometries and excitation energies of neutral lithium, sodium, and potassium complexes with two ethylenediamine and one or two crown ether molecules. Three different sizes of crowns are employed (12-crown-4, 15-crown-5, 18-crown-6). The ground state of all complexes contains an electron in an s-type orbital. For the mono-crown ether complexes, this orbital is the polarized valence s-orbital of the metal, but for the other systems this orbital is a peripheral diffuse orbital. The nature of the low-lying electronic states is found to be different for each of these species. Specifically, the metal ethylenediamine complexes follow the previously discovered shell model of metal ammonia complexes (1s, 1p, 1d, 2s, 1f), but both mono- and sandwich di-crown ether complexes bear a different shell model partially due to their lower (cylindrical) symmetry and the stabilization of the 2s-type orbital. Li(15-crown-5) is the only complex with the metal in the middle of the crown ether and adopts closely the shell model of metal ammonia complexes. Our findings suggest that the electronic band structure of electrides (metal crown ether sandwich aggregates) and expanded metals (metal ammonia aggregates) should be different despite the similar nature of these systems (bearing diffuse electrons around a metal complex).

Graphical abstract: Ground and excited states analysis of alkali metal ethylenediamine and crown ether complexes

Supplementary files

Article information

Article type
Paper
Submitted
07 Jun 2021
Accepted
18 Aug 2021
First published
19 Aug 2021

Phys. Chem. Chem. Phys., 2021,23, 20298-20306

Author version available

Ground and excited states analysis of alkali metal ethylenediamine and crown ether complexes

I. R. Ariyarathna and E. Miliordos, Phys. Chem. Chem. Phys., 2021, 23, 20298 DOI: 10.1039/D1CP02552J

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