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首页> 外文期刊>Chemistry: A European journal >Photoinduced electron Transfer between Metal-Coordinated Cyclodextrin assemblies and Viologens
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Photoinduced electron Transfer between Metal-Coordinated Cyclodextrin assemblies and Viologens

机译:金属配位的环糊精组件与紫精之间的光诱导电子转移

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摘要

Two novel tris(bipyridine)ruthenium(II) complexes bearing two and six #beta#-cyclodextrin binding sites on their ligands have been synthesised and characterised. complex 1, bearing two cyclodextrins, adopts a conformation in aqueous solution where parts of the aromatic ligands are self-included into the cyclodextrin moieties. This results in a loss of symmetry of the complex and gives rise to a much more complicated ~1H NMR spectrum than expected. Photophysical studies indicate that the appended cyclodextrins protect the luminescent ruthenium core from quenching by oxygen, which results in longer excited state lifetimes and higher emission quantum yields compared with the reference compound, the unsubstituted ruthenium tris(bipyridine). Inclusion of suitable guests such as dialkyl-viologens leads to a quenching of the luminescence of the central unit. In these supramolecular donor-acceptor dyads an efficient potoinduced electron transfer from the excited ruthenium moiety (the donor) to the viologen unit (the acceptor) is observed. The alkyl chain length of the acceptor plays an important role on the binding properties; when it exceeds a certain limit the binding becomes strong enough for electron transfer to occur. Interestingly, a viologen with only one long alkyl tail instead of two shows no efficient quenching; this indicates that cooperative interactions between two cyclodextrins binding one viologen are essential to raise the binding constant of the supramolecular dyad.
机译:合成并表征了在其配体上带有两个和六个#beta#-环糊精结合位点的两个新颖的三(联吡啶)钌(II)配合物。带有两个环糊精的配合物1在水溶液中呈构象,其中部分芳族配体自包含在环糊精部分中。这导致络合物的对称性丧失,并导致比预期更复杂的〜1H NMR光谱。光物理研究表明,与未取代的钌三(联吡啶)参比化合物相比,附加的环糊精可以保护发光的钌核免于被氧淬灭,从而导致更长的激发态寿命和更高的发射量子产率。包含合适的客体,例如二烷基紫胶,会导致中央单元的发光淬灭。在这些超分子供体-受体二元组中,观察到有效的由光诱导的电子从激发的钌部分(供体)转移到紫精单元(受体)。受体的烷基链长在结合性能上起着重要作用。当其超过一定极限时,结合变得足够强以发生电子转移。有趣的是,仅具有一个长的烷基尾而不是两个的紫精显示没有有效的淬灭。这表明结合一种紫精的两种环糊精之间的协同相互作用对于提高超分子二聚体的结合常数至关重要。

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