Probing the electronic structure and Au-C bonding in AuC 2 n H ( n = 4-7) using photoelectron imaging spectroscopy and quantum chemical calculations

We report a combined experimental and theoretical study on the structures and chemical bonding of AuC H ( = 4-7) using photoelectron imaging and quantum chemical calculations. All the ground states of anions and neutral AuC H have a linear geometry. The electron affinities (EAs) are measured to be 2...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Physical chemistry chemical physics : PCCP 2022-02, Vol.24 (8), p.5039-5047
Hauptverfasser: Han, Changcai, Xiong, Xiao-Gen, Hong, Jing, Yan, Shuai-Ting, Fei, Zejie, Liu, Hongtao, Dong, Changwu
Format: Artikel
Sprache:eng
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:We report a combined experimental and theoretical study on the structures and chemical bonding of AuC H ( = 4-7) using photoelectron imaging and quantum chemical calculations. All the ground states of anions and neutral AuC H have a linear geometry. The electron affinities (EAs) are measured to be 2.063(5), 2.157(5), 2.220(5), and 2.267(5) eV for AuC H, = 4-7, respectively. The photoelectron imaging data of AuC H and AuC H reveal major vibrational progressions in the Au-C stretching modes. The ground state stretching frequencies of the titled neutral molecules are 226, 193, 177, and 128 cm , respectively. By comparing the experimental value and theoretical molecular orbital analysis, we confirm that the CAM-B3LYP method is more suitable for describing the properties of such unsaturated long chains organogold clusters. The experimental and CAM-B3LYP methods give a big picture of the trend in EAs of AuC H. This shows that the EA value becomes larger with an increase in the carbon chain length, and it also shows a slow increment for larger . The NRT analysis shows that the change of the Au-C bond order is not obvious as the number of carbon atoms increases, and the covalent character dominates the Au-C chemical bonds in these neutral species. The current study provides a wealth of electronic structure information about long-chain AuC H ( = 4-7) and their corresponding neutral counterparts.
ISSN:1463-9076
1463-9084
DOI:10.1039/D1CP05057E