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d轨道占据对铜阳离子-π相互作用的性质和强度的影响:阈碰撞诱导解离和理论研究

Influence of the d orbital occupation on the nature and strength of copper cation-pi interactions: threshold collision-induced dissociation and theoretical studies.

作者信息

Ruan Chunhai, Yang Zhibo, Rodgers M T

机构信息

Department of Chemistry, Wayne State University, Detroit, Michigan 48202, USA.

出版信息

Phys Chem Chem Phys. 2007 Nov 28;9(44):5902-18. doi: 10.1039/b709820k. Epub 2007 Sep 25.

Abstract

Threshold collision-induced dissociation techniques are employed to determine the bond dissociation energies of a wide variety of copper cation-pi complexes, Cu(+)(pi-ligand), where pi-ligand = benzene, flurobenzene, chlorobenzene, bromobenzene, iodobenzene, phenol, toluene, anisole, pyrrole, N-methylpyrrole, indole, naphthalene, aniline, N-methylaniline, and N,N-dimethylaniline. The primary and lowest energy dissociation pathway corresponds to the endothermic loss of the intact neutral pi-ligand for all complexes except those to N-methylpyrrole, indole, aniline, N-methylaniline, and N,N-dimethylaniline. In the latter complexes, the primary dissociation pathway corresponds to loss of the intact ligand accompanied by charge transfer, thereby producing a neutral copper atom and ionized pi-ligand. Fragmentation of the pi-ligands is also observed at elevated energies in several cases. Theoretical calculations at the B3LYP/6-311G(d,p) level of theory are used to determine the structures, vibrational frequencies, and rotational constants of these complexes. Multiple low-energy conformers are found for all of the copper cation-pi complexes. Theoretical bond dissociation energies are determined from single point energy calculations at the B3LYP/6-311+G(3df,2p) level of theory using the B3LYP/6-311G(d,p) optimized geometries. The agreement between theory and experiment is very good for most complexes. The nature and strength of the binding in these copper cation-pi complexes are studied and compared with the corresponding cation-pi complexes to Na(+). Natural bond orbital analyses are carried out to examine the influence of the d orbital occupation on copper cation-pi interactions.

摘要

采用阈值碰撞诱导解离技术来测定多种铜阳离子-π配合物Cu(+)(π-配体)的键解离能,其中π-配体 = 苯、氟苯、氯苯、溴苯、碘苯、苯酚、甲苯、苯甲醚、吡咯、N-甲基吡咯、吲哚、萘、苯胺、N-甲基苯胺和N,N-二甲基苯胺。除了与N-甲基吡咯、吲哚、苯胺、N-甲基苯胺和N,N-二甲基苯胺形成的配合物外,所有配合物的主要且能量最低的解离途径都对应于完整中性π-配体的吸热损失。在后者的配合物中,主要解离途径对应于完整配体的损失并伴随电荷转移,从而产生中性铜原子和离子化的π-配体。在某些情况下,在较高能量下也观察到了π-配体的碎片化。使用B3LYP/6-311G(d,p)理论水平的理论计算来确定这些配合物的结构、振动频率和转动常数。发现所有铜阳离子-π配合物都有多个低能量构象。理论键解离能是在B3LYP/6-311G(d,p)优化几何结构的基础上,通过B3LYP/6-311+G(3df,2p)理论水平的单点能量计算确定的。对于大多数配合物来说,理论与实验之间的一致性非常好。研究了这些铜阳离子-π配合物中的结合性质和强度,并与相应的Na(+)阳离子-π配合物进行了比较。进行了自然键轨道分析,以研究d轨道占据对铜阳离子-π相互作用的影响。

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