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首页> 外文期刊>Angewandte Chemie >Mixed IR/Vis Two-Dimensional Spectroscopy: Chemical Exchange beyond the Vibrational Lifetime and Sub-ensemble Selective Photochemistry
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Mixed IR/Vis Two-Dimensional Spectroscopy: Chemical Exchange beyond the Vibrational Lifetime and Sub-ensemble Selective Photochemistry

机译:红外/可见光混合二维光谱:超越振动寿命和子系综选择性光化学的化学交换

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摘要

Two-dimensional exchange spectroscopy (2D EXSY) is a powerful method to study the interconversion (chemical exchange) of molecular species in equilibrium. This method has recently been realized in femtosecond 2D-IR spectroscopy, dramatically increasing the time resolution. However, current implementations allow the EXSY signal (and therefore the chemical process of interest) only to be tracked during the lifetime (T1) of the observed spectroscopic transition. This is a severe limitation, as typical vibrational T1 are only a few ps. An IR/Vis pulse sequence is presented that overcomes this limit and makes the EXSY signal independent of T1. The same pulse sequence allows to collect time-resolved IR spectra after electronic excitation of a particular chemical species in a mixture of species with strongly overlapping UV/ Vis spectra. Different photoreaction pathways and dynamics of coexisting isomers or of species involved in different intermo-lecular interactions can thus be revealed, even if the species cannot be isolated because they are in rapid equilibrium.
机译:二维交换光谱(2D EXSY)是研究平衡中分子物种相互转化(化学交换)的有效方法。该方法最近在飞秒2D-IR光谱中实现,大大提高了时间分辨率。然而,目前的实现方案只允许在观察到的光谱跃迁的生命周期(T1)内跟踪EXSY信号(以及感兴趣的化学过程)。这是一个严重的限制,因为典型的振动 T1 只有几 ps。提出了一个红外/可见脉冲序列,该序列克服了这一限制,使EXSY信号独立于T1。相同的脉冲序列允许在具有强烈重叠的紫外/可见光谱的物种混合物中对特定化学物质进行电子激发后收集时间分辨的红外光谱。因此,可以揭示共存异构体或参与不同分子间相互作用的物种的不同光反应途径和动力学,即使这些物种由于处于快速平衡状态而无法分离。

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