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Reactive vibrational excitation spectroscopy of formic acid in solid argon: Quantum yield for infrared induced trans→cis isomerization and solid state effects on the vibrational spectrum.

机译:固体氩气中甲酸的反应振动激发光谱:红外诱导的反式→顺式异构化的量子产率以及固态物对振动光谱的影响。

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摘要

Formic acid molecules are trapped in two predominant local environments (sites) when isolated in an argon matrix at 8 K. Using narrowband tunable infrared (IR) radiation, we performed site-selective excitation of various vibrational modes of the lower-energy trans conformer. For all excited modes, ranging from 7000 to 2950 cm-1, we detected site-selective isomerization to the higher-energy cis form. By measuring the IR absorption of a selected band of the cis conformer as a function of the excitation frequency, the reactive vibrational excitation (RVE) spectra were obtained. The trans→cis isomerization quantum yields for the excited modes were determined. Remarkably, very high absolute values were obtained for the quantum yield (up to 40%) at excitation energies above the reaction barrier. The efficiency of the photoinduced isomerization is essentially independent of the excited vibrational mode in a broad energy interval. Even when the excitation energy was below the reaction barrier, IR-induced rotational isomerization was observed, which indicates tunneling from the vibrationally excited trans conformer to the cis form. Using the RVE spectra, phonon sidebands were detected on the high-frequency side of the zero-phonon-line of the OH stretching mode of trans-formic acid. These weak and broad bands were not observed in the absorption spectra. Additionally, a relatively narrow band blueshifted by 6 cm-1 from the OH stretching fundamental mode was assigned to a librational satellite based on simulations using the hindered rotation model for an asymmetric top trapped in an octahedral crystal field. © 2003 American Institute of Physics. [ABSTRACT FROM AUTHOR] Copyright of Journal of Chemical Physics is the property of American Institute of Physics and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
机译:甲酸分子在8 K的氩气基质中隔离时,被困在两个主要的局部环境(位点)中。使用窄带可调谐红外(IR)辐射,我们对低能反式构象异构体的各种振动模式进行了位点选择性激发。对于从7000到2950 cm-1的所有激发模式,我们检测到了位点选择性异构化为高能顺式形式。通过测量选定的顺式构象带的红外吸收随激发频率的变化,获得了反应性振动激发(RVE)光谱。确定了激发态的反式→顺式异构化量子产率。值得注意的是,在高于反应势垒的激发能下,量子产率获得了非常高的绝对值(最高40%)。在广泛的能量区间内,光致异构化的效率基本上与激发振动模式无关。即使当激发能低于反应势垒时,也观察到IR诱导的旋转异构化,这表明从振动激发的反式构象异构体到顺式形式的隧穿。使用RVE光谱,在反甲酸的OH拉伸模式的零声子线的高频侧检测到了声子边带。在吸收光谱中未观察到这些弱和宽带。此外,基于对受困于八面体晶场中的不对称顶部的旋转模型进行的模拟,从OH拉伸基本模式蓝移了6 cm-1的相对较窄的波段被分配给解放卫星。 ©2003美国物理研究所。 [来自作者的摘要]《化学物理学杂志》的版权是美国物理研究所的财产,未经版权所有者的明确书面许可,不得复制或通过电子邮件将其内容发布到多个站点或将其发布到列表服务器。但是,用户可以打印,下载或通过电子邮件发送文章以供个人使用。该摘要可以被删节。不保证副本的准确性。用户应参考该材料的原始发行版本以获取完整摘要。 (版权适用于所有摘要。)

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