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2-硫尿嘧啶第一三重激发态中双势阱的证据。

Evidence for a Double Well in the First Triplet Excited State of 2-Thiouracil.

作者信息

Koyama Daisuke, Milner Matthew J, Orr-Ewing Andrew J

机构信息

School of Chemistry, University of Bristol , Cantock's Close, Bristol BS8 1TS, U.K.

出版信息

J Phys Chem B. 2017 Oct 5;121(39):9274-9280. doi: 10.1021/acs.jpcb.7b06917. Epub 2017 Sep 26.

Abstract

The computationally predicted presence of two structurally distinct minima in the first triplet excited (T) state of 2-thiouracil (2TU) is substantiated by sub-picosecond transient vibrational absorption spectroscopy (TVAS) in deuterated acetonitrile solution. Following 300 nm ultraviolet excitation to the second singlet excited state of 2TU, a transient infrared absorption band centered at 1643 cm is observed within our minimum time resolution of 0.3 ps. It is assigned either to 2TU molecules in the S state or to vibrationally hot T-state molecules, with the latter assignment more consistent with recent computational and experimental studies. The 1643 cm band decays with a time constant of 7.2 ± 0.8 ps, and there is corresponding growth of several further bands centered at 1234, 1410, 1424, 1443, 1511, 1626, and 1660 cm which show no decline in intensity over the 1 ns time limit of our measurements. These spectral features are assigned to two different conformations of 2TU, corresponding to separate energy minima on the T-state potential energy surface, on the basis of their extended lifetimes, computed infrared frequencies, and the observed quenching of the bands by addition of styrene. Corresponding measurements for the 4-thiouracil (4TU) isomer show sub-picosecond population of the T state, which vibrationally cools with a time constant of 5.2 ± 0.6 ps. However, TVAS measurements in the carbonyl stretching region do not distinguish the two computed T-state conformers of 4TU because of the similarity of their vibrational frequencies.

摘要

在氘代乙腈溶液中,亚皮秒瞬态振动吸收光谱(TVAS)证实了2-硫尿嘧啶(2TU)的第一三重激发(T)态中存在两个结构不同的极小值,这是通过计算预测得出的。用300nm紫外线激发2TU至第二单重激发态后,在我们0.3ps的最小时间分辨率内,观察到一个以1643cm为中心的瞬态红外吸收带。它要么归因于处于S态的2TU分子,要么归因于振动热的T态分子,后一种归属与最近的计算和实验研究更为一致。1643cm的吸收带以7.2±0.8ps的时间常数衰减,同时在1234、1410、1424、1443、1511、1626和1660cm为中心出现了几个进一步的吸收带,在我们1ns的测量时间范围内强度没有下降。基于它们的延长寿命、计算出的红外频率以及通过添加苯乙烯观察到的吸收带猝灭,这些光谱特征被归因于2TU的两种不同构象,对应于T态势能面上的不同能量极小值。对4-硫尿嘧啶(4TU)异构体的相应测量表明,T态的亚皮秒布居,其以5.2±0.6ps的时间常数进行振动冷却。然而,由于4TU的两种计算出的T态构象的振动频率相似,在羰基伸缩区域的TVAS测量无法区分它们。

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