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用超快红外光谱揭示水中的皮秒质子转移动力学。

Picosecond Proton Transfer Kinetics in Water Revealed with Ultrafast IR Spectroscopy.

作者信息

Carpenter William B, Fournier Joseph A, Lewis Nicholas H C, Tokmakoff Andrei

机构信息

Department of Chemistry, James Franck Institute, and Institute for Biophysical Dynamics , The University of Chicago , Chicago , Illinois 60637 , United States.

出版信息

J Phys Chem B. 2018 Mar 15;122(10):2792-2802. doi: 10.1021/acs.jpcb.8b00118. Epub 2018 Mar 1.

Abstract

Aqueous proton transport involves the ultrafast interconversion of hydrated proton species that are closely linked to the hydrogen bond dynamics of water, which has been a long-standing challenge to experiments. In this study, we use ultrafast IR spectroscopy to investigate the distinct vibrational transition centered at 1750 cm in strong acid solutions, which arises from bending vibrations of the hydrated proton complex. Broadband ultrafast two-dimensional IR spectroscopy and transient absorption are used to measure vibrational relaxation, spectral diffusion, and orientational relaxation dynamics. The hydrated proton bend displays fast vibrational relaxation and spectral diffusion timescales of 200-300 fs; however, the transient absorption anisotropy decays on a remarkably long 2.5 ps timescale, which matches the timescale for hydrogen bond reorganization in liquid water. These observations are indications that the bending vibration of the aqueous proton complex is relatively localized, with an orientation that is insensitive to fast hydrogen bonding fluctuations and dependent on collective structural relaxation of the liquid to reorient. We conclude that the orientational relaxation is a result of proton transfer between configurations that are well described by a Zundel-like proton shared between two flanking water molecules.

摘要

水合质子传输涉及与水的氢键动力学紧密相关的水合质子物种的超快相互转化,这一直是实验面临的长期挑战。在本研究中,我们使用超快红外光谱来研究强酸溶液中以1750 cm为中心的独特振动跃迁,该跃迁源于水合质子络合物的弯曲振动。宽带超快二维红外光谱和瞬态吸收用于测量振动弛豫、光谱扩散和取向弛豫动力学。水合质子弯曲显示出200 - 300 fs的快速振动弛豫和光谱扩散时间尺度;然而,瞬态吸收各向异性在2.5 ps的显著长的时间尺度上衰减,这与液态水中氢键重组的时间尺度相匹配。这些观察结果表明,水合质子络合物的弯曲振动相对局域化,其取向对快速氢键波动不敏感,并且依赖于液体的集体结构弛豫来重新取向。我们得出结论,取向弛豫是质子在由两个侧翼水分子共享的类似祖德尔质子很好描述的构型之间转移的结果。

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