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腔修饰光化学中的非极化子效应

Non-Polaritonic Effects in Cavity-Modified Photochemistry.

作者信息

Thomas Philip A, Tan Wai Jue, Kravets Vasyl G, Grigorenko Alexander N, Barnes William L

机构信息

Department of Physics and Astronomy, University of Exeter, Exeter, EX4 4QL, UK.

School of Physics and Astronomy, University of Manchester, Manchester, M13 9PL, UK.

出版信息

Adv Mater. 2024 Feb;36(7):e2309393. doi: 10.1002/adma.202309393. Epub 2023 Dec 7.

Abstract

Strong coupling of molecules to vacuum fields is widely reported to lead to modified chemical properties such as reaction rates. However, some recent attempts to reproduce infrared strong coupling results have not been successful, suggesting that factors other than strong coupling may sometimes be involved. In the first vacuum-modified chemistry experiment, changes to a molecular photoisomerization process in the ultraviolet-visible spectral range are attributed to strong coupling of the molecules to visible light. Here, this process is re-examined, finding significant variations in photoisomerization rates consistent with the original work. However, there is no evidence that these changes need to be attributed to strong coupling. Instead, it is suggested that the photoisomerization rates involved are most strongly influenced by the absorption of ultraviolet radiation in the cavity. These results indicate that care must be taken to rule out non-polaritonic effects before invoking strong coupling to explain any changes of properties arising in cavity-based experiments.

摘要

分子与真空场的强耦合被广泛报道会导致化学反应速率等化学性质的改变。然而,最近一些重现红外强耦合结果的尝试并未成功,这表明有时可能涉及强耦合以外的因素。在首次真空改性化学实验中,紫外 - 可见光谱范围内分子光异构化过程的变化被归因于分子与可见光的强耦合。在此,对该过程进行了重新研究,发现光异构化速率存在显著变化,与原研究一致。然而,没有证据表明这些变化需要归因于强耦合。相反,有人认为所涉及的光异构化速率受腔内紫外线辐射吸收的影响最大。这些结果表明,在调用强耦合来解释基于腔的实验中出现的任何性质变化之前,必须谨慎排除非极化子效应。

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