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Inaugural Article: Femtosecond cluster studies of the solvated 7-azaindole excited state double-proton transfer

机译:就职文章:飞秒簇研究溶剂化的7-氮杂吲哚激发态双质子转移

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摘要

Presented here are femtosecond pump-probe studies on the water-solvated 7-azaindole dimer, a model DNA base pair. In particular, studies are presented that further elucidate the nature of the reactive and nonreactive dimers and also provide new insights establishing that the excited state double-proton transfer in the dimer occurs in a stepwise rather than a concerted manner. A major question addressed is whether the incorporation of a water molecule with the dimer results in the formation of species that are unable to undergo excited state double-proton transfer, as suggested by a recent study reported in the literature [Nakajima, A., Hirano, M., Hasumi, R., Kaya, K., Watanabe, H., Carter, C. C., Williamson, J. M. & Miller, T. (1997) J. Phys. Chem. 101, 392–398]. In contrast to this earlier work, our present findings reveal that both reactive and nonreactive dimers can coexist in the molecular beam under the same experimental conditions and definitively show that the clustering of water does not induce the formation of the nonreactive dimer. Rather, when present with a species already determined to be a nonreactive dimer, the addition of water can actually facilitate the occurrence of the proton transfer reaction. Furthermore, on attaining a critical hydration number, the data for the nonreactive dimer suggest a solvation-induced conformational structure change leading to proton transfer on the photoexcited half of the 7-azaindole dimer.
机译:本文介绍了飞秒泵浦探针研究的水溶7-氮杂吲哚二聚体,一种模型DNA碱基对。特别地,提出了进一步阐明反应性和非反应性二聚体的性质的研究,并且还提供了新的见解,从而确定了二聚体中的激发态双质子转移是以逐步而不是协同的方式发生的。正如文献报道[Nakajima,A.,Hirano]最近的一项研究所表明的那样,解决的一个主要问题是水分子与二聚体的结合是否会导致形成无法进行激发态双质子转移的物种的形成。 ,M.,Hasumi,R.,Kaya,K.,Watanabe,H.,Carter,CC,Williamson,JM和Miller,T。(1997)J.Phys.Sci。,1997,9,1879,1959。化学101,392–398]。与这项较早的工作相反,我们目前的发现表明,在相同的实验条件下,反应性和非反应性二聚体都可以共存于分子束中,并明确表明水的聚集不会诱导非反应性二聚体的形成。相反,当存在已经确定为非反应性二聚体的物质时,添加水实际上可以促进质子转移反应的发生。此外,在达到临界水合数时,非反应性二聚体的数据表明溶剂化诱导的构象结构变化导致质子转移到7-氮杂吲哚二聚体的光激发一半上。

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