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一类新型含桥联1,2-二嗪配体的三羰基铼(I)发光配合物:电化学、光物理及计算表征

A new class of luminescent tricarbonyl rhenium(I) complexes containing bridging 1,2-diazine ligands: electrochemical, photophysical, and computational characterization.

作者信息

Donghi Daniela, D'Alfonso Giuseppe, Mauro Matteo, Panigati Monica, Mercandelli Pierluigi, Sironi Angelo, Mussini Patrizia, D'Alfonso Laura

机构信息

Dipartimento di Chimica Inorganica, Metallorganica e Analitica, Università di Milano, via Venezian 21, I-20133 Milano, Italy.

出版信息

Inorg Chem. 2008 May 19;47(10):4243-55. doi: 10.1021/ic7023692. Epub 2008 Apr 19.

Abstract

A novel class of luminescent tricarbonyl rhenium(I) complexes of general formula [Re2(mu-X)2(CO)6(mu-diaz)] (X=halogen and diaz=1,2-diazine) was prepared by reacting [ReX(CO)5] with 0.5 equiv of diazine (seven different ligands were used). The bridging coordination of the diazine in these dinuclear complexes was confirmed by single-crystal X-ray analysis. Cyclic voltammetry in acetonitrile showed for all the complexes (but the phthalazine derivative) a chemically and electrochemically reversible ligand-centered reduction, as well as a reversible metal-centered bielectronic oxidation. With respect to the prototypical luminescent [ReCl(CO)3(bpy)] complex, the oxidation is more difficult and the reduction easier (about +0.3 V), so that a similar highest occupied molecular orbital-lowest unoccupied molecular orbital gap is observed. All of the complexes exhibit photoluminescence at room temperature in solution, with broad unstructured emission from metal-to-ligand charge-transfer states, at lambda in the range 579-620 nm. Lifetimes (tau=20-2200 ns) and quantum yields (Phi up to 0.12) dramatically change upon varying the bridging ligand X and the diazine substituents: in particular, quantum yields decrease in the series Cl, Br, and I and in the presence of substituents at the alpha positions of the pyridazine ring. A combined density functional and time-dependent density functional study of the geometry, relative stability, electronic structure, and photophysical properties of all the pyridazine derivatives was performed. The nature of the excited states involved in the electronic absorption spectra was ascertained, and trends in the energy of the highest occupied and lowest unoccupied molecular orbitals upon changing the pyridazine substituents and the bridging halogen ligands were discussed. The observed emission properties of these complexes were shown to be related to a combination of steric and electronic factors affecting their ground-state geometry and their stability.

摘要

通过使[ReX(CO)5]与0.5当量的二嗪(使用了七种不同的配体)反应,制备了通式为[Re2(μ-X)2(CO)6(μ-二嗪)](X = 卤素,二嗪 = 1,2-二嗪)的一类新型发光三羰基铼(I)配合物。通过单晶X射线分析证实了二嗪在这些双核配合物中的桥连配位。乙腈中的循环伏安法表明,对于所有配合物(除了酞嗪衍生物),存在化学和电化学可逆的以配体为中心的还原以及可逆的以金属为中心的双电子氧化。相对于典型的发光[ReCl(CO)3(bpy)]配合物,氧化更困难,还原更容易(约+0.3 V),因此观察到类似的最高占据分子轨道-最低未占据分子轨道能隙。所有配合物在室温下的溶液中均表现出光致发光,具有从金属到配体电荷转移态的宽且无结构的发射,波长范围为579 - 620 nm。改变桥连配体X和二嗪取代基时,寿命(τ = 20 - 2200 ns)和量子产率(Φ高达0.12)会发生显著变化:特别是,量子产率在Cl、Br和I系列中以及在哒嗪环α位存在取代基时会降低。对所有哒嗪衍生物的几何结构、相对稳定性、电子结构和光物理性质进行了密度泛函和含时密度泛函的联合研究。确定了电子吸收光谱中涉及的激发态的性质,并讨论了改变哒嗪取代基和桥连卤素配体时最高占据和最低未占据分子轨道能量的趋势。这些配合物观察到的发射性质被证明与影响其基态几何结构和稳定性的空间和电子因素的组合有关。

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