首页> 外文期刊>Journal of Organometallic Chemistry >Synthesis, spectroscopic and electrochemical studies of a series of transition metal complexes with amino- or bis(bromomethyl)-substituted dppz-ligands: Building blocks for fullerene-based donor-bridge-acceptor dyads
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Synthesis, spectroscopic and electrochemical studies of a series of transition metal complexes with amino- or bis(bromomethyl)-substituted dppz-ligands: Building blocks for fullerene-based donor-bridge-acceptor dyads

机译:一系列过渡金属配合物被氨基或双(溴甲基)取代的dppz-配体的合成,光谱和电化学研究:富勒烯基供体桥受体二元化合物的结构单元

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摘要

Transition metal complexes with ligands based on dipyrido[3,2-a:2',3'-c]phenazine (dppz) have been synthesized. As metal fragments the [Ru(bpy)(2)](+), Re(CO)(3)Cl and the [Cu(PPh3)(2)](+) moieties have been used. The complexes containing amino- or bis(bromomethyl) substituted dppz ligands can be used for fullerene-based donor-bridge-acceptor dyads. The electronic absorption spectra of these complexes and of the dppz ligands were investigated. The dppz ligands show strong absorptions in the 300 and 390 nm region. An additional absorption band in the visible region (similar to 440 nm) is observed for the amino-substituted dppz-ligands. Ruthenium complexes exhibited broad absorption bands at 350-500 nm arising from intraligand-based transitions and the MLCT transition. MLCT transitions of the Re(l) and Cu(1) complexes are observed as shoulders of the stronger ligand-based absorption band tailing out to 400-500 nm. The electrochemically active complexes and ligands were studied by cyclic voltammetry and square-wave voltammetry. All ligands show one first reversible one-electron reduction located at the phenazine portion. These reductions are shifted to more positive redox potentials upon complexation. Oxidation potentials for reversible processes could be determined for the Ru2+/Ru3+ couple. For rhenium(I) and copper(I) complexes one irreversible oxidation process is observed. (c) 2005 Elsevier B.V. All rights reserved.
机译:合成了具有基于二吡啶基[3,2-a:2',3'-c]吩嗪(dppz)的配体的过渡金属配合物。作为金属碎片,已使用[Ru(bpy)(2)](+),Re(CO)(3)Cl和[Cu(PPh3)(2)](+)部分。含有氨基或双(溴甲基)取代的dppz配体的配合物可用于基于富勒烯的供体桥受体二元体。研究了这些配合物和dppz配体的电子吸收光谱。 dppz配体在300和390 nm区域显示强吸收。对于氨基取代的dppz-配体,在可见光区域(类似于440 nm)观察到了另一个吸收带。钌配合物在350-500 nm处显示宽的吸收带,这是由于基于配体的跃迁和MLCT跃迁引起的。 Re(l)和Cu(1)配合物的MLCT过渡被观察到,较强的基于配体的吸收带的肩峰拖尾到400-500 nm。通过循环伏安法和方波伏安法研究了电化学活性配合物和配体。所有配体显示位于吩嗪部分的一个第一可逆单电子还原。络合后,这些减少转移到更正的氧化还原电势上。可以确定Ru2 + / Ru3 +对的可逆过程的氧化电位。对于rh(I)和铜(I)配合物,观察到一种不可逆的氧化过程。 (c)2005 Elsevier B.V.保留所有权利。

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