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面式-[Re(Cl)(CO)₃(t - 4 - 苯乙烯基吡啶)₂]和面式-[Re(t - 4 - 苯乙烯基吡啶)(CO)₃(2,2'-联吡啶)]⁺的配体反式-顺式异构化之前的超快激发态动力学。

Ultrafast excited-state dynamics preceding a ligand trans-cis isomerization of fac-[Re(Cl)(CO)3(t-4-styrylpyridine)2] and fac-[Re(t-4-styrylpyridine)(CO)3(2,2'-bipyridine)]+.

作者信息

Busby Michael, Matousek Pavel, Towrie Michael, Vlcek Antonín

机构信息

Department of Chemistry and Centre for Materials Research, Queen Mary, University of London, Mile End Road, London E1 4NS, United Kingdom.

出版信息

J Phys Chem A. 2005 Apr 7;109(13):3000-8. doi: 10.1021/jp044753+.

Abstract

UV-vis absorption and resonance Raman spectra of the complexes fac-[Re(Cl)(CO)3(stpy)2] and fac-[Re(stpy)(CO)3(bpy)]+ (stpy = t-4-styrylpyridine, bpy = 2,2'-bipyridine) show that their lowest absorption bands are dominated by stpy-localized intraligand (IL) pi pi* transitions. For the latter complex a Re --> bpy transition contributes to the low-energy part of the absorption band. Optical population of the 1IL excited state of fac-[Re(Cl)(CO)3(stpy)2] is followed by an intersystem crossing (< or =0.9 ps) to an 3IL state with the original planar trans geometry of the stpy ligand. This state undergoes a approximately 90 degrees rotation around the stpy C=C bond with a 11 ps time constant. An electronically excited species with an approximately perpendicular orientation of the phenyl and pyridine rings of the stpy ligand is formed. Conversion to the ground state and isomerization occurs in the nanosecond range. Intraligand excited states of fac-[Re(stpy)(CO)3(bpy)]+ show the same behavior. Moreover, it was found that the planar reactive 3IL excited state is rapidly and efficiently populated after optical excitation into the Re --> bpy 1MLCT excited state. A 1MLCT --> 3MLCT intersystem crossing takes place first with a time constant of 0.23 ps followed by an intramolecular energy transfer from the ReI(CO)3(bpy) chromophore to a stpy-localized 3IL state with a 3.5 ps time constant. The fast rate ensures complete conversion. Coordination of the stpy ligand to the ReI center thus switches the ligand trans-cis isomerization mechanism from singlet to triplet (intramolecular sensitization) and, in the case of fac-[Re(stpy)(CO)3(bpy)]+, opens an indirect pathway for population of the reactive 3IL excited state via MLCT states.

摘要

配合物fac-[Re(Cl)(CO)3(stpy)2]和fac-[Re(stpy)(CO)3(bpy)]+(stpy = 对-4-苯乙烯基吡啶,bpy = 2,2'-联吡啶)的紫外可见吸收光谱和共振拉曼光谱表明,它们的最低吸收带主要由stpy局域化的配体内(IL)ππ*跃迁主导。对于后一种配合物,Re→bpy跃迁对吸收带的低能量部分有贡献。fac-[Re(Cl)(CO)3(stpy)2]的1IL激发态的光致填充之后是系间窜越(≤0.9皮秒)到具有stpy配体原始平面反式几何构型的3IL态。该状态以11皮秒的时间常数围绕stpy的C = C键进行约90度的旋转。形成了一种电子激发物种,其中stpy配体的苯基和吡啶环近似垂直取向。向基态的转化和异构化发生在纳秒范围内。fac-[Re(stpy)(CO)3(bpy)]+ 的配体内激发态表现出相同的行为。此外,发现光激发进入Re→bpy 1MLCT激发态后,平面反应性3IL激发态会迅速且有效地被填充。首先发生1MLCT→3MLCT系间窜越,时间常数为0.23皮秒,随后是分子内能量从ReI(CO)3(bpy)发色团转移到具有3.5皮秒时间常数的stpy局域化3IL态。快速的速率确保了完全转化。因此,stpy配体与ReI中心的配位将配体反-顺异构化机制从单重态转变为三重态(分子内敏化),并且在fac-[Re(stpy)(CO)3(bpy)]+的情况下,开辟了一条通过MLCT态填充反应性3IL激发态的间接途径。

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