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振动极化激元化学中共振抑制效应的理论见解

Theoretical Insights into the Resonant Suppression Effect in Vibrational Polariton Chemistry.

作者信息

Vega Sebastian Montillo, Ying Wenxiang, Huo Pengfei

机构信息

Department of Chemistry, University of Rochester, Rochester, New York 14627, United States.

The Institute of Optics, Hajim School of Engineering, University of Rochester, Rochester, New York 14627, United States.

出版信息

J Am Chem Soc. 2025 Jun 11;147(23):19727-19737. doi: 10.1021/jacs.5c03182. Epub 2025 Jun 2.

Abstract

Recent experiments demonstrated the possibilities of modifying ground-state chemical reaction rates by placing an ensemble of molecules in an optical microcavity through a resonant coupling between the cavity mode and molecular vibrations. Typical VSC experiments operate in the absence of any light source. The VSC-induced rate constant suppression occurs under the resonance condition when the cavity frequency matches the molecular vibrational frequency, and only under the normal incidence when considering in-plane momentum inside a Fabry-Pérot cavity. In this work, we use quantum dynamics simulations and analytic theories to provide valuable insights into observed VSC phenomena, including the resonance behavior, the nonlinear change of the rate constant when increasing Rabi splitting, modification of both reactive enthalpy and entropy, and a reason why, with a very low barrier, there is a lack of the cavity modification. The analytic theory also exhibits the normal incidence condition and collective coupling effects.

摘要

最近的实验表明,通过腔模与分子振动之间的共振耦合,将分子系综置于光学微腔中,可以改变基态化学反应速率。典型的振动-自旋耦合(VSC)实验在没有任何光源的情况下进行。当腔频率与分子振动频率匹配时,在共振条件下会出现VSC诱导的速率常数抑制,并且在考虑法布里-珀罗腔内面内动量时,仅在正入射情况下才会出现这种抑制。在这项工作中,我们使用量子动力学模拟和解析理论,对观察到的VSC现象提供有价值的见解,包括共振行为、拉比分裂增加时速率常数的非线性变化、反应焓和熵的改变,以及在势垒非常低的情况下缺乏腔修饰的原因。解析理论还展示了正入射条件和集体耦合效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09c1/12164353/e4d9e5649642/ja5c03182_0001.jpg

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