首页> 美国卫生研究院文献>Chemical Science >Direct observation by time-resolved infrared spectroscopy of the bright and the dark excited states of the [Ru(phen)2(dppz)]2+ light-switch compound in solution and when bound to DNA
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Direct observation by time-resolved infrared spectroscopy of the bright and the dark excited states of the [Ru(phen)2(dppz)]2+ light-switch compound in solution and when bound to DNA

机译:通过时间分辨红外光谱法直接观察溶液中以及与DNA结合时[Ru(phen)2(dppz)] 2+光开关化合物的明亮和黑暗激发态

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摘要

The [Ru(phen)2(dppz)]2+ complex (1) is non-emissive in water but is highly luminescent in organic solvents or when bound to DNA, making it a useful probe for DNA binding. To date, a complete mechanistic explanation for this “light-switch” effect is still lacking. With this in mind we have undertaken an ultrafast time resolved infrared (TRIR) study of 1 and directly observe marker bands between 1280–1450 cm–1, which characterise both the emissive “bright” and the non-emissive “dark” excited states of the complex, in CD3CN and D2O respectively. These characteristic spectral features are present in the [Ru(dppz)3]2+ solvent light-switch complex but absent in [Ru(phen)3]2+, which is luminescent in both solvents. DFT calculations show that the vibrational modes responsible for these characteristic bands are predominantly localised on the dppz ligand. Moreover, they reveal that certain vibrational modes of the “dark” excited state couple with vibrational modes of two coordinating water molecules, and through these to the bulk solvent, thus providing a new insight into the mechanism of the light-switch effect. We also demonstrate that the marker bands for the “bright” state are observed for both Λ- and Δ-enantiomers of 1 when bound to DNA and that photo-excitation of the complex induces perturbation of the guanine and cytosine carbonyl bands. This perturbation is shown to be stronger for the Λ-enantiomer, demonstrating the different binding site properties of the two enantiomers and the ability of this technique to determine the identity and nature of the binding site of such intercalators.
机译:[Ru(phen)2(dppz)] 2 + 络合物( 1 )在水中不发光,但在有机溶剂中或与DNA结合时具有高发光性,使其成为DNA结合的有用探针。迄今为止,仍缺乏对此“光开关”效果的完整机械解释。考虑到这一点,我们对 1 进行了超快速时间分辨红外(TRIR)研究,并直接观察了1280–1450 cm –1 之间的标记带该复合物的“亮”和非发射“暗”激发态分别在CD3CN和D2O中。这些特征光谱特征存在于[Ru(dppz)3] 2 + 溶剂光开关复合物中,但在[Ru(phen)3] 2 + 中不存在。在两种溶剂中均发光。 DFT计算表明,负责这些特征谱带的振动模式主要位于dppz配体上。此外,他们揭示了“暗”激发态的某些振动模式与两个配位水分子的振动模式耦合,并通过这些振动模式传递到主体溶剂,从而为光开关效应的机理提供了新的见识。我们还证明,与DNA结合时, 1 的Λ-和Δ-对映异构体均观察到“亮”状态的标记带,并且复合物的光激发引起鸟嘌呤和胞嘧啶羰基带。已显示出对于Λ-对映异构体而言该扰动更强,证明了两种对映异构体的不同结合位点性质以及该技术确定此类嵌入剂的结合位点的特性和性质的能力。

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