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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Yellow-light sensitization of a ligand photosubstitution reaction in a ruthenium polypyridyl complex covalently bound to a rhodamine dye?
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Yellow-light sensitization of a ligand photosubstitution reaction in a ruthenium polypyridyl complex covalently bound to a rhodamine dye?

机译:在与罗丹明染料共价结合的钌多吡啶基配合物中的配体光解反应的黄光敏化?

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The ruthenium complex [Ru(terpy)(bpy)(Hmte)]~(2+) ([1]~(2+)), where terpy is 2,2’;6’,2’’-terpyridine, bpy is 2,2’- bipyridine, and Hmte is 2-methylthioethan-1-ol, poorly absorbs yellow light, and although its quantum yield for the photosubstitution of Hmte by water is comparable at 570 nm and at 452 nm (0.011(4) vs. 0.016(4) at 298 K at neutral pH), the photoreaction using yellow photons is very slow. Complex [1]~(2+) was thus functionalized with rhodamine B, an organic dye known for its high extinction coefficient for yellow light. Complex [Ru(Rterpy)(bpy)(Hmte)]~(3+) ([2]~(3+)) was synthesized, where Rterpy is a terpyridine ligand covalently bound to rhodamine B via a short saturated linker. [2]Cl_3 shows a very high extinction coefficient at 570 nm (44 000 M~(?1) cm~(?1)), but its luminescence upon irradiation at 570 nm is completely quenched in aqueous solution. The quantum yield for the photosubstitution of Hmte by water in [2]~(3+) was comparable to that in [1]~(2+) at 570 nm (0.0085(6) vs. 0.011(4), respectively), which, in combination with the much better photon collection, resulted in a higher photosubstitution rate constant for [2]~(3+) than for [1]~(2+). The energy of yellow photons is thus transferred efficiently from the rhodamine antenna to the ruthenium center, leading to efficient photosubstitution of Hmte. These results bring new opportunities for extending the photoactivation of polypyridyl ruthenium complexes towards longer wavelengths.
机译:钌络合物[Ru(terpy)(bpy)(Hmte)]〜(2+)([1]〜(2+)),其中terpy是2,2'; 6',2''-叔吡啶,bpy是2,2'-联吡啶,而Hmte是2-methylthioethan-1-ol,吸收较弱的黄光,尽管其在570 nm和452 nm下对水进行Hmte光致光解的量子产率相当(0.011(4)vs 0.016(4)在298 K在中性pH下),使用黄色光子的光反应非常慢。络合物[1]〜(2+)因此被若丹明B官能化,后者是一种以黄光的高消光系数而闻名的有机染料。合成了[Ru(Rterpy)(bpy)(Hmte)]〜(3+)([2]〜(3+)),其中Rterpy是通过短饱和连接基与罗丹明B共价结合的三联吡啶配体。 [2] Cl_3在570nm处显示出非常高的消光系数(44 000M〜(?1)cm〜(?1)),但是在570nm下照射时其发光在水溶液中被完全淬灭。在[2]〜(3+)中,水在Hmte中光解的量子产率与[1]〜(2+)在570 nm处的量子产率相当(分别为0.0085(6)对0.011(4)),与更好的光子收集相结合,导致[2]〜(3+)的光稳定速率常数高于[1]〜(2+)的光稳定速率常数。因此,黄色光子的能量有效地从若丹明天线转移到钌中心,从而导致Hmte的有效光解。这些结果为将聚吡啶钌络合物的光活化扩展到更长的波长带来了新的机会。

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