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首页> 外文期刊>Journal of the American Chemical Society >LUMINESCENCE QUENCHING IN SUPRAMOLECULAR SYSTEMS - A COMPARISON OF DNA- AND SDS MICELLE-MEDIATED PHOTOINDUCED ELECTRON TRANSFER BETWEEN METAL COMPLEXES
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LUMINESCENCE QUENCHING IN SUPRAMOLECULAR SYSTEMS - A COMPARISON OF DNA- AND SDS MICELLE-MEDIATED PHOTOINDUCED ELECTRON TRANSFER BETWEEN METAL COMPLEXES

机译:超分子系统中的发光猝灭-DNA和SDS胶束介导的光致电子络合物之间光电子转移的比较

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摘要

Photoinduced electron transfer reactions between photoexcited Ru(phen)(2)dppz(2+) (phen = 1,10-phenanthroline, dppz = dipyridophenazine) and accepters Rh(phi)(2)bpy(3+) and Rh(phen)(2)phi(3+) (phi = 9,10-phenanthrenequinone diimine, bpy = 2,2'-bipyridine) are compared in micelles and DNA. Both microheterogeneous environments contain a negatively charged surface and hydrophobic interior and the cationic complexes associate strongly with each. However, reactions between molecules bound to DNA or to micelles show striking differences which can be correlated with the unique character of the highly ordered, pi-stacked basepairs in DNA compared to the disordered, aliphatic chains in the micelles. In DNA, Rh(phi)(2)bpy(3+) quenches *Ru(phen)(2)dppz(2+) on a fast time scale (unimolecular rate constant greater than or equal to 10(8) s(-1)), whereas no detectable quenching of *Ru(II) emission by Rh(phen)(2)phi(3+) is observed. In contrast, both complexes quench equally well in SDS micelles. Although static quenching on the nanosecond time scale is observed for Rh(phi)(2)bpy(3+) in DNA, reactions in SDS occur dynamically by intramicellar diffusion, with a bimolecular rate constant of 1.1 x 10(8) M(-1) s(-1) for Rh(phi)(2)bpy(3+) and 1.2 x 10(8) M(-1) s(-1) for Rh(phen)(2)phi(3+). Reactions on DNA are also shown to be DNA-mediated in that no solvent-isotope effects are observed in the quenching. In addition, there is enantioselectivity seen in reactions on the right-handed DNA helix but not in the achiral micelle, indicating that quenching is sensitive to the geometry of intercalation. Efficient electron transfer quenching in DNA compared to SDS micelles therefore provides evidence against the cooperative association of molecules on DNA and for the importance of intercalative stacking of the donor and acceptor for fast electron transfer through the DNA pi-stack.
机译:光激发的Ru(phen)(2)dppz(2+)(phen = 1,10-菲咯啉,dppz = dipyrididophenazine)与受体Rh(phi)(2)bpy(3+)和Rh(phen)之间的光诱导电子转移反应在胶束和DNA中比较了(2)phi(3+)(phi = 9,10-菲醌二亚胺,bpy = 2,2'-联吡啶)。两种微非均质环境均带有带负电的表面和疏水性内部空间,而阳离子络合物则彼此紧密结合。然而,与DNA或与胶束结合的分子之间的反应显示出惊人的差异,与胶束中无序的脂肪族链相比,这与DNA中高度有序的pi堆积碱基对的独特特征有关。在DNA中,Rh(phi)(2)bpy(3+)在快速的时间尺度上(单分子速率常数大于或等于10(8)s(-)淬灭* Ru(phen)(2)dppz(2+) 1)),而未观察到Rh(phen)(2)phi(3+)对* Ru(II)发射的可检测的猝灭。相反,两种复合物在SDS胶束中均能很好地淬灭。尽管观察到DNA中的Rh(phi)(2)bpy(3+)在纳秒时间尺度上发生静态猝灭,但SDS中的反应通过胶束内扩散动态发生,双分子速率常数为1.1 x 10(8)M(- 1)Rh(phi)(2)bpy(3+)的s(-1)和Rh(phen)(2)phi(3+)的1.2 x 10(8)M(-1)s(-1) 。 DNA上的反应也显示为DNA介导的,因为在淬灭中未观察到溶剂-同位素效应。另外,在右手DNA螺旋上的反应中有对映选择性,但在非手性胶束中没有,这表明淬灭对插入的几何结构很敏感。因此,与SDS胶束相比,DNA中有效的电子转移猝灭为反对DNA分子之间的协同结合提供了证据,并且证明了供体和受体的插入堆叠对于通过DNA pi堆叠快速电子转移的重要性。

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