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基于宽带瞬态吸收光谱和量子化学计算的水中鸟苷单磷酸的光诱导动力学

Photoinduced dynamics of guanosine monophosphate in water from broad-band transient absorption spectroscopy and quantum-chemical calculations.

作者信息

Karunakaran Venugopal, Kleinermanns K, Improta R, Kovalenko S A

机构信息

Department of Chemistry, Humboldt University, Brook-Taylor Street-2, D-12489 Berlin, Germany.

出版信息

J Am Chem Soc. 2009 Apr 29;131(16):5839-50. doi: 10.1021/ja810092k.

Abstract

Guanosine monophosphate (GMP) in aqueous solutions has been studied with femtosecond broad-band transient absorption spectroscopy and by quantum-mechanical calculations. The sample was excited at 267 or 287 nm and probed between 270 and 1000 nm with 100 fs resolution, for various pH values between 2 and 7. At pH 2, when the guanine ring is ground-state protonated (GMPH(+)), we observe isosbestic behavior indicating state-to-state relaxation. The relaxation is biexponential, tau(1) = 0.4 ps, tau(2) = 2.2 ps, and followed by slower internal conversion with tau(3) = 167 ps. For nonprotonated GMP in the pH range 7-4, we find biexponential decay in the region 400-900 nm (tau(1) = 0.22 ps, tau(2) = 0.9 ps), whereas, between 270 and 400 nm, the behavior is triexponential with one growing, tau(1) = 0.25 ps, and two decaying, tau(2) = 1.0 ps, tau(3) = 2.5 ps, components. The excited-state evolution is interpreted with the help of quantum-chemical calculations, performed at the time-dependent PBE0 level accounting for bulk solvent effects and specific solvation. The computed dynamics involves L(a) and L(b) bright excited states, whereas the n(0)pi* and pisigma* dark excited states play a minor role. Independent of the pH, the photoinduced evolution involves ultrafast L(b)-->L(a) conversion (tau(ba) << 100 fs) and exhibits the presence of a wide planar plateau on L(a). For neutral GMP a barrierless path connects this region to a conical intersection (CI) with the ground state, giving an account of the ultrafast decay of this species. For protonated GMPH(+) the system evolves into a stable minimum L(a min) characterized by out-of-plane displacement of NH and CH groups, which explains the longer (167 ps) fluorescence lifetime.

摘要

利用飞秒宽带瞬态吸收光谱法并通过量子力学计算对水溶液中的鸟苷一磷酸(GMP)进行了研究。在2至7的不同pH值下,样品在267或287nm处被激发,并以100fs的分辨率在270至1000nm之间进行探测。在pH为2时,当鸟嘌呤环处于基态质子化状态(GMPH(+))时,我们观察到等吸收行为,表明存在状态间弛豫。弛豫是双指数的,τ(1)=0.4ps,τ(2)=2.2ps,随后是较慢的内转换,τ(3)=167ps。对于pH范围在7 - 4的非质子化GMP,我们发现在400 - 900nm区域内是双指数衰减(τ(1)=0.22ps,τ(2)=0.9ps),而在270至400nm之间,行为是三指数的,其中一个分量增长,τ(1)=0.25ps,另外两个分量衰减,τ(2)=1.0ps,τ(3)=2.5ps。借助于在含时PBE0水平下进行的量子化学计算来解释激发态的演化,该计算考虑了本体溶剂效应和特定溶剂化作用。计算得到的动力学涉及L(a)和L(b)明亮激发态,而n(0)π和πσ暗激发态起的作用较小。与pH无关,光诱导演化涉及超快的L(b)→L(a)转换(τ(ba) << 100fs),并且在L(a)上呈现出一个宽的平面平台。对于中性GMP,一条无势垒路径将该区域连接到与基态的锥形交叉点(CI),这解释了该物种的超快衰减。对于质子化的GMPH(+),系统演化为一个稳定的极小值L(a min),其特征是NH和CH基团的面外位移,这解释了较长(167ps)的荧光寿命。

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