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首页> 外文期刊>Journal of chemical theory and computation: JCTC >lonization-lnduced Structural Changes in Uracil Dimers and Their Spectroscopic Signatures
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lonization-lnduced Structural Changes in Uracil Dimers and Their Spectroscopic Signatures

机译:电离诱导尿嘧啶二聚体的结构变化及其光谱特征

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The electronic structure of the three representative isomers of the ionized uracil dimers is characterized by high-level electronic structure calculations. Noncovalent interactions between the fragments lower the vertical ionization energies by 0.13-0.35 eV, the largest drop being observed for the stacked and the T-shaped isomers. The initial hole is delocalized in the stacked and the H-bonded isomers and is localized in the T-shaped one. The ionization induces significant structural relaxation and increases the binding energies. The stacked dimer cation relaxes to the symmetric structure bound by 22.7 kcal/mol. The T-shaped dimer cation has a binding energy of 25.1 kcal/mol. Thus, the relative order of the stacked and T-shaped isomers is reversed upon Ionization. Finally, the H-bonded isomer, which relaxes to the proton-transferred structure, is bound by 37.0 kcal/mol. The electronic spectra of all three isomers characterized at the vertical and the relaxed geometries show different patterns, which may be exploited in spectroscopic probing of ionization-induced dynamics in these species.
机译:电离尿嘧啶二聚体的三个代表性异构体的电子结构的特征在于高级电子结构计算。片段之间的非共价相互作用将垂直电离能降低了0.13-0.35 eV,对于堆积和T形异构体,观察到最大的下降。最初的孔在堆叠的和H键合的异构体中是局域化的,并在T形异构体中局域化。电离引起明显的结构弛豫并增加结合能。堆叠的二聚阳离子松弛至22.7 kcal / mol结合的对称结构。 T形二聚阳离子具有25.1kcal / mol的结合能。因此,在电离时,堆叠的和T形异构体的相对顺序相反。最后,松弛至质子转移结构的氢键异构体的结合力为37.0 kcal / mol。在垂直和弛豫的几何结构上表征的所有三种异构体的电子光谱显示出不同的模式,可以在这些物种的电离诱导动力学的光谱探测中加以利用。

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