Publikation: Shell structure and s-p hybridization in small aluminum clusters
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1994
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Eberhardt, Wolfgang
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Chemical Physics Letters. 1994, 217(5-6), pp. 600-604. Available under: doi: 10.1016/0009-2614(93)E1436-K
Zusammenfassung
Photoelectron spectra of Al−n (n=2 20) clusters are presented. Due to the improved energy resolution and the relatively high photon energy (hv=6.424 eV, ArF laser radiation) available in our experiment the spectra reveal the mechanism of the onset of the s p hybridization occuring in these particles. Between Al−6 Al−12 a mixing of the uppermost antibonding 3s derived orbital with the 3p band takes place which is observed simultaneously with the 2D→3D structural transition predicted for Al clusters in this size range. Starting from Al−13 a pattern resembling an electronic shell structure is identified.
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530 Physik
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GANTEFÖR, Gerd, Wolfgang EBERHARDT, 1994. Shell structure and s-p hybridization in small aluminum clusters. In: Chemical Physics Letters. 1994, 217(5-6), pp. 600-604. Available under: doi: 10.1016/0009-2614(93)E1436-KBibTex
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doi={10.1016/0009-2614(93)E1436-K},
title={Shell structure and s-p hybridization in small aluminum clusters},
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journal={Chemical Physics Letters},
pages={600--604},
author={Ganteför, Gerd and Eberhardt, Wolfgang}
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<dcterms:abstract xml:lang="eng">Photoelectron spectra of Al−n (n=2 20) clusters are presented. Due to the improved energy resolution and the relatively high photon energy (hv=6.424 eV, ArF laser radiation) available in our experiment the spectra reveal the mechanism of the onset of the s p hybridization occuring in these particles. Between Al−6 Al−12 a mixing of the uppermost antibonding 3s derived orbital with the 3p band takes place which is observed simultaneously with the 2D→3D structural transition predicted for Al clusters in this size range. Starting from Al−13 a pattern resembling an electronic shell structure is identified.</dcterms:abstract>
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