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Luminescent Dinuclear Ruthenium Terpyridine Complexes with a Bis-Phenylbenzimidazole Spacer

机译:用双苯基苯并咪唑间隔物致吡啶配合物的发光二核钌

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摘要

A conjugated bis-terpyridine bridging ligand, 2-(4-(2,6-di(pyridin-2-yl)pyridin-4-yl)phenyl)-6-(2-(4-(2,6-di(pyridin-2-yl)pyridin-4-yl)phenyl)-1H-benzo[d]imidazol-6-yl)-1H-benzo[d] imidazole (tpy-BPhBzimH(2)-tpy), was designed in this work by covalent coupling of 3,3'-diaminobenzidine and two 4'-(p-formylphenyl)-2,2':6',2 ''-terpyridine units to synthesize a new series of bimetallic Ru(II)-terpyridine light harvesting complexes. Photophysical and electrochemical properties were modulated by the variation of the terminal ligands in the complexes. The new compounds were thoroughly characterized by H-1 NMR spectroscopy, high-resolution mass spectrometry, and elemental analysis. Absorption spectra of the complexes consist of very strong ligand-centered pi-pi* and n-pi* transitions in the UV, metal-to-ligand, and intraligand charge transfer bands in the visible regions. Steady-state and time-resolved emission spectral measurements indicate that the complexes exhibit moderately intense luminescence at room temperature within the spectral domain of 653-687 nm having luminescence lifetimes in the range between 6.3 and 55.2 ns, depending upon terminal tridentate ligand and solvent. Variable-temperature luminescence measurements suggest substantial increase of the energy gap between luminescent (3)metal-to-ligand charge transfer state and nonluminescent (3)metal centered in the complexes compared to the parent [Ru(tpy)(2)](2+). Each of the three bimetallic complexes exhibits only one reversible couple in the positive potential window with almost no detectable splitting corresponding to simultaneous oxidation of the two remote Ru centers. All the complexes possess a number of imidazole NH protons, which became sufficiently acidic upon metal ion coordination. By utilizing these NH protons, we thoroughly studied anion recognition properties of the complexes in pure organic as well as predominantly aqueous media through multiple optical channels and spectroscopic methods. Finally computation investigations employing density functional theory (DFT) and time-dependent DFT were done to examine the electronic structures of the complexes and accurate assignment of experimentally observed optical spectral bands.
机译:缀合的双 - 吡啶桥接配体,2-(4-(2,6-二(吡啶-2-基)吡啶-4-基)苯基)-6-(2-(4-(2,6-(吡啶-2-基)吡啶-4-基)苯基)-1H-苯并[d]咪唑-6-y1)-1H-苯并[d]咪唑(TPY-BPHBZIMH(2)-TPY)设计通过共价偶联3,3'-二氨基苯甲酸和两种4' - (对甲酰基苯基)-2,2':6',2'' - 吡啶单元,合成一系列新的双金属ru(II) - 吡啶光收获复合物。通过复合物中的末端配体的变异来调节光学和电化学性质。通过H-1 NMR光谱,高分辨率质谱和元素分析彻底地表征了新化合物。复合物的吸收光谱由UV,金属到配体和intraligand的insigions中的具有非常强的配体中心的PI-PI *和N-PI *过渡组成。稳态和时分分辨的发射光谱测量表明,在653-687nm的光谱结构域内,在室温下,在653-687nm的光谱结构域内具有653-687nm的光谱域中的频率寿命在6.3和55.2ns的范围内,这取决于末端的末端,取决于末端三齿配体和溶剂。可变温度发光测量表明,与父母(TPY)(2)(2)(2)相比,在复合物中以络合物为中心的发光(3)金属与配体电荷转移状态和非发光(3)金属之间的能量间隙的大幅增加+)。三个双金属复合物中的每一个在正电位窗口中仅呈现一个可逆耦合,几乎没有对应于两个遥控器的同时氧化的可检测分裂。所有复合物都具有许多咪唑NH质子,其在金属离子协调时变得足够酸性。通过利用这些NH质子,我们通过多光学通道和光谱方法彻底研究了纯有机物中的复合物的阴离子识别性能,主要是水性介质。最后进行计算调查,采用密度泛函理论(DFT)和时间依赖DFT,以检查复合物的电子结构,并准确地分配实验观察到的光谱带。

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