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由亚苯基间隔基桥联的棒状双金属钌和锇配合物。合成、电化学及光物理性质

Rodlike bimetallic ruthenium and osmium complexes bridged by phenylene spacers. Synthesis, electrochemistry, and photophysics.

作者信息

Welter Steve, Salluce Nunzio, Benetti Arianna, Rot Nicolette, Belser Peter, Sonar Prashant, Grimsdale Andrew C, Müllen Klaus, Lutz Martin, Spek Anthony L, De Cola Luisa

机构信息

Molecular Photonics Materials, University of Amsterdam, Nieuwe Achtergracht 166, 1018 WV Amsterdam, The Netherlands.

出版信息

Inorg Chem. 2005 Jun 27;44(13):4706-18. doi: 10.1021/ic0483141.

Abstract

In the search for light-addressable nanosized compounds we have synthesized 10 dinuclear homometallic trisbipyridyl complexes of linear structure with the general formula [M(bpy)3-BL-M(bpy)3]4+ [M = Ru(II) or Os(II); BL = polyphenylenes (2, 3, 4, or 5 units) or indenofluorene; bpy = 2,2'-bipyridine]. By using a "chemistry on the complex" approach, different sizes of rodlike systems have been obtained with a length of 19.8 and 32.5 A for the shortest and longest complex, respectively. For one of the ruthenium precursors, [Rubpy-ph2-Si(CH3)3][PF6]2, single crystals were obtained by recrystallization from methanol. Their photophysical and electrochemical properties are reported. All the compounds are luminescent both at room and low temperature with long excited-state lifetimes due to an extended delocalization. Nanosecond transient absorption showed that the lowest excited state involves the chelating unit attached to the bridging ligand. Electrochemical data indicated that the first reduction is at a slightly more positive potential than for the reference complexes [M(bpy)3]2+ (M = Ru, Os). This result confirms that the best acceptor is the bipyridine moiety connected to the conjugated spacers. The role of the tilt angle between the phenylene units, in the two series of complexes, for the ground and excited states is discussed.

摘要

在寻找可光寻址的纳米级化合物的过程中,我们合成了10种具有线性结构的双核同金属三联吡啶配合物,其通式为[M(bpy)3 - BL - M(bpy)3]4+ [M = Ru(II) 或 Os(II); BL = 亚苯基(2、3、4或5个单元)或茚并芴;bpy = 2,2'-联吡啶]。通过采用“配合物上的化学”方法,获得了不同尺寸的棒状体系,最短和最长配合物的长度分别为19.8 Å和32.5 Å。对于其中一种钌前体[Rubpy - ph2 - Si(CH3)3][PF6]2,通过从甲醇中重结晶得到了单晶。报道了它们的光物理和电化学性质。由于离域扩展,所有化合物在室温和低温下均发光,且具有较长的激发态寿命。纳秒瞬态吸收表明,最低激发态涉及连接到桥连配体上的螯合单元。电化学数据表明,首次还原的电位比参考配合物[M(bpy)3]2+(M = Ru,Os)略正。这一结果证实,最佳受体是连接到共轭间隔基上的联吡啶部分。讨论了两个系列配合物中亚苯基单元之间的倾斜角对基态和激发态的作用。

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