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通过光解离和速度映射成像研究银的阳离子-π配合物。

Cation-π Complexes of Silver Studied with Photodissociation and Velocity-Map Imaging.

作者信息

Rittgers Brandon M, Leicht Daniel, Duncan Michael A

机构信息

Department of Chemistry, University of Georgia, Athens, Georgia 30602, United States.

出版信息

J Phys Chem A. 2020 Nov 5;124(44):9166-9176. doi: 10.1021/acs.jpca.0c08498. Epub 2020 Oct 26.

Abstract

Ag(aromatic) ion-molecule complexes of benzene, toluene, or furan are generated in the gas phase by laser vaporization in a supersonic expansion. These ions are mass selected in a time-of-flight spectrometer and studied with ultraviolet laser photodissociation and photofragment imaging. UV laser excitation results in dissociative charge transfer (DCT) for these ions, producing neutral silver atom and the respective aromatic cation as the photofragments. Velocity-map imaging and slice imaging techniques are employed to investigate the kinetic energy release in these photodissociation processes. In each case, DCT produces significant kinetic energy, and evidence is also found for excitation of the internal rovibrational degrees of freedom for the molecular cations. Analysis of the kinetic energy release together with the known ionization energies of silver and the molecular ligands provides new information on the cation-π bond energies.

摘要

通过超声速膨胀中的激光汽化在气相中生成苯、甲苯或呋喃的Ag(芳香族)离子 - 分子络合物。这些离子在飞行时间光谱仪中进行质量选择,并通过紫外激光光解离和光碎片成像进行研究。紫外激光激发导致这些离子发生离解电荷转移(DCT),产生中性银原子和相应的芳香族阳离子作为光碎片。采用速度映射成像和切片成像技术来研究这些光解离过程中的动能释放。在每种情况下,DCT都会产生显著的动能,并且还发现了分子阳离子内部转动振动自由度被激发的证据。结合银和分子配体的已知电离能对动能释放进行分析,为阳离子 - π键能提供了新的信息。

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