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首页> 外文期刊>Inorganica Chimica Acta >COMPARING THE SPECTROSCOPIC AND ELECTROCHEMICAL PROPERTIES OF RUTHENIUM AND OSMIUM COMPLEXES OF THE TRIDENTATE POLYAZINE LIGANDS 2,2'/6',2''-TERPYRIDINE AND 2,3,5,6-TETRAKIS(2-PYRIDYL)PYRAZINE
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COMPARING THE SPECTROSCOPIC AND ELECTROCHEMICAL PROPERTIES OF RUTHENIUM AND OSMIUM COMPLEXES OF THE TRIDENTATE POLYAZINE LIGANDS 2,2'/6',2''-TERPYRIDINE AND 2,3,5,6-TETRAKIS(2-PYRIDYL)PYRAZINE

机译:梯形多嗪配体2,2'/ 6',2''-吡啶吡啶和2,3,5,6-四(2-吡啶)吡嗪的钌和OS配合物的光谱和电化学性质比较

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A number of osmium and ruthenium complexes of the tridentate ligands 2,2':6',2 ''-terpyridine (tpy) and 2,3,5,6-tetrakis(2-pyridyl)pyrazine (tpp) have been prepared and characterized by our laboratory. All these complexes possess metal based oxidations and ligand based reductions localized on each polyazine ligand. Polymetallic complexes bridged by the tpp ligand exhibit two sequential tpp based reductions prior to the reduction of other polyazine ligands in these complexes. The spectroscopy of these complexes is dominated by ligand based pi-->pi* transitions in the ultraviolet and MLCT (metal-to-ligand charge transfer) bands terminating on each polyazine ligand in the visible. For the complexes reported herein the lowest lying optical transition is a M --> BL CT band. For most of the complexes reported, occupation of this excited state gives rise to an observable emission at room temperature. For ruthenium complexes of these tridentate ligands, the presence of a low-lying LF state shortens the excited state lifetimes of these chromophores. This gives rise to ruthenium complexes that display shorter excited state lifetimes than the analogous osmium based systems. Incorporation of tpp based chromophores into polymetallic frameworks leads to the production of bimetallic species with long-lived excited states, similar to 100 ns at room temperature. This makes these chromophores good candidates for the development of stereochemically defined supramolecular complexes. It is possible to measure an electrochemical HOMO-LUMO energy gap and a correlation between this electrochemically measured energy gap and the spectroscopic energy associated with this HOMO-->LUMO transition are reported herein (HOMO = highest occupied molecular orbital, LUMO = lowest unoccupied molecular orbital). [References: 51]
机译:三齿配体2,2':6',2''-吡啶(tpy)和2,3,5,6-四(2-吡啶基)吡嗪(tpp)的许多和钌配合物我们实验室的特点。所有这些配合物均具有基于金属的氧化和位于每个聚嗪配体上的基于配体的还原。由tpp配体桥接的多金属络合物在还原这些络合物中的其他聚嗪配体之前表现出两个连续的基于tpp的还原。这些络合物的光谱以终止于可见光中每个聚嗪配体的紫外和MLCT(金属到配体的电荷转移)谱带中基于配体的pi→pi *跃迁为主。对于本文报道的复合物,最低的光学跃迁是M→BL CT带。对于大多数报道的配合物,这种激发态的占据导致在室温下可观察到的发射。对于这些三齿配体的钌配合物,低位LF态的存在会缩短这些发色团的激发态寿命。这导致钌配合物显示出比基于类似than的系统更短的激发态寿命。将基于tpp的生色团掺入多金属骨架中会导致产生长寿命激发态的双金属物种,类似于室温下的100 ns。这使得这些生色团成为开发立体化学定义的超分子复合物的良好候选者。可以测量电化学HOMO-LUMO能隙,并且在此报告了此电化学测量的能隙与与此HOMO-> LUMO跃迁相关的光谱能之间的相关性(HOMO =最高占据分子轨道,LUMO =最低未占据分子轨道)。 [参考:51]

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