首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Ruthenium(II) Polypyridyl Complexes Coordinated Directly to the Pyrrole Backbone of pi-Extended Boron Dipyrromethene (Bodipy) Dyes: Synthesis, Characterization, and Spectroscopic and Electrochemical Properties
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Ruthenium(II) Polypyridyl Complexes Coordinated Directly to the Pyrrole Backbone of pi-Extended Boron Dipyrromethene (Bodipy) Dyes: Synthesis, Characterization, and Spectroscopic and Electrochemical Properties

机译:钌(II)甲吡啶基配合物直接与Pi延伸硼双甲烯(BODIPY)染料的吡咯主链进行协调:合成,表征和光谱和电化学性质

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A series of new Bodipy dyes incorporating the pi-extended isoquino[5,6-c]pyrrole have been synthesized and characterized. The dyes display intense Bodipy (pi-pi*) transitions and emissions with high quantum efficiencies. Spectroscopic, electrochemical, and theoretical calculations are used to give insight into the frontier orbitals. Coordination of {Ru(bpy)(2)Cl}(+) subunits to the peripheral isoquinol nitrogen atoms of the Bodipy dyes leads to three new bis-Ru(II)-polypyridyl-Bodipy complexes with the Ru(II) centers in direct contact with the dipyrrin core. Spectroscopic studies of the complexes reveal the traditional metal to ligand charge transfer (MLCT) transitions associated with Ru(d pi) to bpy(pi*) transitions. However, a more intense transition above 600 nm is also observed. This transition is independent of the meso-substituents of the dipyrrin and is shifted to lower energy by as much as 25 nm compared to that of the Bodipy dyes without the Ru(II) subunits. Spectroscopic, electrochemical, and spectroelectrochemical studies suggest that the Bodipy pi-orbitals are destabilized by coordination of the Ru(II) moieties. All three Ru-2-Bodipy complexes show the ability to generate singlet oxygen when irradiated within the photodynamic therapy window (600-850 nm) as evidenced by singlet oxygen trapping experiments.
机译:掺入PI延伸异喹啉的一系列新的Bodipy染料已经合成并表征。染料显示强烈的BODIPY(PI-PI *)过渡和具有高量子效率的排放。光谱,电化学和理论计算用于洞察前轨道。与染料染料外周异喹啉氮原子的{ru(bpy)(2)(2)(2)(2)cl}(+)亚基的协调导致三种新的双-ce(ii) - 与ru(ii)中心的三丙吡啶基 - Bodipy复合物直接与杜布林核心接触。复合物的光谱研究将传统金属显示为与ru(d pi)与bpy(pi *)转变相关的配体电荷转移(mlct)转变。然而,也观察到600nm以上更强烈的过渡。该转变与双吡啶的中间取代基无关,与没有Ru(ii)亚基的Bodipy染料相比,通过较高为25nm的较低能量。光谱,电化学和光谱电化学研究表明,通过Ru(II)部分的协调,Bodipy Pi-轨差异不稳定。所有三个Ru-2-Bodipy复合物都显示出在光动力治疗窗口(600-850nm)内时产生单线氧的能力,如单线次氧捕获实验所证明的。

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