首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis,Luminescence,and Electrochemical Studies of Tris(homoleptic) Ruthenium(II) and Osmium(II) Complexes of 6'-ToIyl-2,2':4',2'-terpyridine
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Synthesis,Luminescence,and Electrochemical Studies of Tris(homoleptic) Ruthenium(II) and Osmium(II) Complexes of 6'-ToIyl-2,2':4',2'-terpyridine

机译:6'-甲苯基-2,2':4',2“-三联吡啶的三(钌)钌(Ⅱ)和(Ⅱ)配合物的合成,发光和电化学研究

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The synthesis and photophysical and electrochemical properties of tris(homoleptic) complexes [Ru(tpbpy)3](PF6)2 (1) and [Os(tpbpy)3](PF6)2 (2) (tpbpy = 6'-tolyl-2,2':4',2"-terpyridine) are reported.The ligand tpbpy is formed as the side product during the synthesis of 4'-tolyl-2,2':6',2"-terpyridine (ttpy) and characterized by single-crystal X-ray diffraction:monoclinic,P21/c.The tridentate tpbpy coordinates as a bidentate ligand.The complexes 1 and 2 exhibit two intense absorption bands in the UV region (200-350 nm) assignable to the ligand-centered (1LC) pi-PI* transitions.The ruthenium(II) complex exhibits a broad absorption band at 470 nm while the osmium(II) complex exhibits an intense absorption band at 485 nm and a weak band at 659 nm assignable to the MLCT (d_(pi)-pi*) transitions.A red shifting of the d_(pi)-pi* MLCT transition is observed on going from the Ru(II) to the Os(ll) complex as expected from the high-lying d_(pi) Os orbitals.These complexes exhibit ligand-sensitized emission at 732 and 736 nm,respectively,upon light excitation onto their MLCT band through excitation of higher energy LC bands at room temperature.The MLCT transitions and the emission maxima of 1 and 2 are substantially red-shifted compared to that of [Ru(bpy)3](PF6)2 and [Os(bpy)3](PF6)2.The emission of both the complexes in the presence of acid is completely quenched indicating that the emission is not due to the protonation of the coordinated ligands.Our results indicate the occurrence of intramolecular energy transfer from the ligand to the metal center.Both the complexes undergo quasi-reversible metal-centered oxidation,and the E_(1/2) values for the M(II)/M(III) redox couples (0.94 and 0.50 V versus Ag/Ag+ for 1 and 2,respectively) are cathodically shifted with respect to that of [Ru(bpy)3](PF6)2 and [Os(bpy)3](PF6)2 (E_(1/2) = 1.28 and 1.09 V versus Ag/Ag+,respectively).The tris(homoleptic) Ru(II) and Os(ll) complexes 1 and 2 could be used to construct polynuclear complexes by using the modular synthetic approach in coordination compounds by exploiting the coordinating ability of the pyridine substituent.Furthermore,these complexes offer the possibility of studying the influence of electron-withdrawing and electron-donating substituents on the photophysical properties of Ru(II) and Os(II) polypyridine complexes.
机译:三(配合物)配合物[Ru(tpbpy)3](PF6)2(1)和[Os(tpbpy)3](PF6)2(2)的合成及其光物理和电化学性质(tpbpy = 6'-甲苯基-报道了2,2':4',2“-吡啶。配体tpbpy是在合成4'-甲苯基-2,2':6',2”-吡啶(ttpy)和通过单晶X射线衍射表征:单斜晶系,P21 / c。三齿tpbpy坐标为双齿配体。配合物1和2在UV区(200-350 nm)表现出两个强吸收带,可分配给配体-中心(1LC)pi-PI *跃迁。钌(II)配合物在470 nm处显示宽吸收带,而os(II)配合物在485 nm处显示强吸收带和659 nm处的弱带(d_(pi)-pi *)跃迁。从高位d_预期,从Ru(II)到Os(II)配合物观察到d_(pi)-pi * MLCT跃迁的红移。 (pi)Os轨道这些复合物表现出配体敏化通过在室温下通过激发更高能量的LC波段将光激发到其MLCT波段上,分别发射732和736 nm的光。与[Ru( bpy)3](PF6)2和[Os(bpy)3](PF6)2。在酸存在下,两种配合物的发射都被完全淬灭,表明该发射不是由于配体的质子化。我们的结果表明发生了分子内能量从配体到金属中心的转移。两种配合物都经历了准可逆的以金属为中心的氧化,M(II)/ M(III)氧化还原的E_(1/2)值相对于[Ru(bpy)3](PF6)2和[Os(bpy)3](PF6)2(E_),阴极偶数(分别为0.94和0.50 V相对于Ag / Ag +分别为1和2) (1/2)分别为1.28和1.09 V(相对于Ag / Ag +)。三(均一)Ru(II)和Os(II)配合物1和2可用于构建多核配合物b可以利用吡啶取代基的配位能力,通过模块化合成方法配位化合物。此外,这些配合物还提供了研究吸电子和供电子取代基对Ru(II)和Os的光物理性质的影响的可能性。 (II)聚吡啶配合物。

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