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硝基多吡啶金属配合物的激发态及其超快衰减。fac-[Re(Cl)(CO)₃(5-硝基-1,10-菲咯啉)]的时间分辨红外吸收、光谱电化学和TD-DFT计算

Excited states of nitro-polypyridine metal complexes and their ultrafast decay. Time-resolved IR Absorption, spectroelectrochemistry, and TD-DFT calculations of fac-[Re(Cl)(CO)3(5-nitro-1,10-phenanthroline)].

作者信息

Gabrielsson Anders, Matousek Pavel, Towrie Michael, Hartl Frantisek, Zalis Stanislav, 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 Jul 21;109(28):6147-53. doi: 10.1021/jp051677h.

Abstract

The lowest absorption band of fac-[Re(Cl)(CO)3(5-NO2-phen)] encompasses two close-lying MLCT transitions. The lower one is directed to LUMO, which is heavily localized on the NO2 group. The UV-vis absorption spectrum is well accounted for by TD-DFT (G03/PBEPBE1/CPCM), provided that the solvent, MeCN, is included in the calculations. Near-UV excitation of fac-[Re(Cl)(CO)3(5-NO2-phen)] populates a triplet metal to ligand charge-transfer excited state, 3MLCT, that was characterized by picosecond time-resolved IR spectroscopy. Large positive shifts of the nu(CO) bands upon excitation (+70 cm(-1) for the A'1 band) signify a very large charge separation between the Re(Cl)(CO)3 unit and the 5-NO2-phen ligand. Details of the excited-state character are revealed by TD-DFT calculated changes of electron density distribution. Experimental excited-state nu(CO) wavenumbers agree well with those calculated by DFT. The 3MLCT state decays with a ca. 10 ps lifetime (in MeCN) into another transient species, that was identified by TRIR and TD-DFT calculations as an intraligand 3npi excited state, whereby the electron density is excited from the NO2 oxygen lone pairs to the pi system of 5-NO2-phen. This state is short-lived, decaying to the ground state with a approximately 30 ps lifetime. The presence of an npi state seems to be the main factor responsible for the lack of emission and the very short lifetimes of 3MLCT states seen in all d6-metal complexes of nitro-polypyridyl ligands. Localization of the excited electron density in the lowest 3MLCT states parallels localization of the extra electron in the reduced state that is characterized by a very small negative shift of the nu(CO) IR bands (-6 cm(-1) for A'1) but a large downward shift of the nu(s)(NO2) IR band. The Re-Cl bond is unusually stable toward reduction, whereas the Cl ligand is readily substituted upon oxidation.

摘要

面式-[Re(Cl)(CO)₃(5-NO₂-菲咯啉)]的最低吸收带包含两个相邻的金属到配体电荷转移(MLCT)跃迁。较低的跃迁指向最低未占分子轨道(LUMO),该轨道主要定域在NO₂基团上。紫外可见吸收光谱通过含时密度泛函理论(TD-DFT,G03/PBEPBE1/CPCM)能很好地解释,前提是在计算中包含溶剂乙腈(MeCN)。面式-[Re(Cl)(CO)₃(5-NO₂-菲咯啉)]在近紫外光激发下会产生一个三重态金属到配体电荷转移激发态,即³MLCT,通过皮秒时间分辨红外光谱对其进行了表征。激发后ν(CO)谱带的大幅正移(A'₁谱带为 +70 cm⁻¹)表明Re(Cl)(CO)₃单元与5-NO₂-菲咯啉配体之间存在非常大的电荷分离。激发态特征的细节通过TD-DFT计算的电子密度分布变化得以揭示。实验测得的激发态ν(CO)波数与DFT计算值吻合良好。³MLCT态以约10 ps的寿命(在MeCN中)衰减为另一种瞬态物种,通过时间分辨红外光谱(TRIR)和TD-DFT计算确定其为配体内³nπ激发态,即电子密度从NO₂氧孤对激发到5-NO₂-菲咯啉的π体系。该态寿命较短,以约30 ps的寿命衰减至基态。nπ态的存在似乎是导致在所有硝基多吡啶配体的d⁶金属配合物中³MLCT态缺乏发射且寿命极短的主要因素。最低³MLCT态中激发电子密度的定域与还原态中额外电子的定域相似,还原态的特征是ν(CO)红外谱带出现非常小的负移(A'₁为 -6 cm⁻¹),但ν(s)(NO₂)红外谱带大幅下移。Re-Cl键对还原异常稳定,而Cl配体在氧化时容易被取代。

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