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表面上混合光致变色异构体的双共振和频光谱揭示了构象特异性的振子效应。

Doubly resonant sum frequency spectroscopy of mixed photochromic isomers on surfaces reveals conformation-specific vibronic effects.

机构信息

Department of Chemistry, University at Buffalo, The State University of New York, Buffalo, New York 14260-3000, USA.

Department of Chemistry, The Pennsylvania State University, 104 Chemistry Building, University Park, Pennsylvania 16802, USA.

出版信息

J Chem Phys. 2019 Mar 21;150(11):114704. doi: 10.1063/1.5081726.

Abstract

Doubly resonant infrared-visible sum-frequency generation (DR-IVSFG) spectroscopy, encompassing coupled vibrational and electronic transitions, provides a powerful method to gain a deep understanding of nuclear motion in photoresponsive surface adsorbates and interfaces. Here, we use DR-IVSFG to elucidate the role of vibronic coupling in a surface-confined donor-acceptor substituted azobenzene. Our study reveals some unique features of DR-IVSFG that have not been previously reported. In particular, vibronic coupling resulted in prominent SFG signal enhancement of selective stretching modes that reveal electronic properties of coexisting photochromic isomers. Our analysis explores two concepts: (1) In partially isomerized azobenzene at the surface, coupling of the fundamental vibrations to the S → S transition is more prominent for the cis isomer due to symmetry breaking, whereas coupling to the S → S transition was dominant in the trans isomer. (2) A strong coupling between the fundamental vibrations and the valence π-electron density, promoted by the initial absorption of an infrared photon, may result in suppression of the intensity of the hot band vibronic transition. This may translate into a suppressed sum-frequency generation signal at sum frequency wavelengths resonant with the S → S transition of the trans isomer. The weaker coupling of the fundamental vibrations to the non-bonding electron density localized on the azo group can therefore produce detectable sum-frequency generation at the resonance wavelength of the weaker S → S transition in the cis form. These results are explained in the framework of a linear coupling model, involving both Franck-Condon and Herzberg-Teller coupling terms. Our theoretical analysis reveals the important role played by molecular conformation, orientation, and vibronic interference in DR-SFG spectroscopy.

摘要

双共振红外可见和频(DR-IVSFG)光谱学,包括耦合的振动和电子跃迁,为深入了解光响应表面吸附物和界面中的核运动提供了一种强大的方法。在这里,我们使用 DR-IVSFG 阐明了在表面受限的供体-受体取代偶氮苯中的振子耦合作用。我们的研究揭示了一些以前未报道过的 DR-IVSFG 的独特特征。特别是,振子耦合导致选择性伸缩模式的 SFG 信号增强显著,这揭示了共存光致变色异构体的电子性质。我们的分析探讨了两个概念:(1)在表面部分异构化的偶氮苯中,由于对称破缺,基本振动与 S→S 跃迁的耦合对于顺式异构体更为明显,而对于反式异构体则主要是与 S→S 跃迁的耦合。(2)通过红外光子的初始吸收,在基本振动和价π电子密度之间产生强烈的耦合,可能导致热带振子跃迁强度的抑制。这可能导致与反式异构体的 S→S 跃迁的和频波长共振的和频信号的抑制。因此,基本振动与局部在偶氮基团上的非键电子密度的较弱耦合可以在较弱的 S→S 跃迁的共振波长处产生可检测的和频产生。这些结果在涉及 Franck-Condon 和 Herzberg-Teller 耦合项的线性耦合模型的框架内得到了解释。我们的理论分析揭示了分子构象、取向和振子干涉在 DR-SFG 光谱学中所起的重要作用。

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