Zeng Hongfei, Pérez-Sánchez Juan B, Eckdahl Christopher T, Liu Pufan, Chang Woo Je, Weiss Emily A, Kalow Julia A, Yuen-Zhou Joel, Stern Nathaniel P
Department of Physics and Astronomy, Northwestern University, Evanston, Illinois 60208, United States.
Department of Chemistry and Biochemistry, University of California-San Diego, La Jolla, California 92093, United States.
J Am Chem Soc. 2023 Sep 13;145(36):19655-19661. doi: 10.1021/jacs.3c04254. Epub 2023 Aug 29.
Most photochemistry occurs in the regime of weak light-matter coupling, in which a molecule absorbs a photon and then performs photochemistry from its excited state. In the strong coupling regime, enhanced light-matter interactions between an optical field and multiple molecules lead to collective hybrid light-matter states called polaritons. This strong coupling leads to fundamental changes in the nature of the excited states including multi-molecule delocalized excitations, modified potential energy surfaces, and dramatically altered energy levels relative to non-coupled molecules. The effect of strong light-matter coupling on covalent photochemistry has not been well explored. Photoswitches undergo reversible intramolecular photoreactions that can be readily monitored spectroscopically. In this work, we study the effect of strong light-matter coupling on the kinetics of photoswitching within optical cavities. Reproducing prior experiments, photoswitching of spiropyran/merocyanine photoswitches is decelerated in a cavity. Fulgide photoswitches, however, show the opposite effect, with strong coupling accelerating photoswitching. While modified merocyanine switching can be explained by changes in radiative decay rates or the amount of light in the cavity, modified fulgide switching kinetics suggest direct changes to excited-state reaction kinetics.
大多数光化学发生在弱光 - 物质耦合 regime 中,其中分子吸收一个光子,然后从其激发态进行光化学过程。在强耦合 regime 中,光场与多个分子之间增强的光 - 物质相互作用导致称为极化激元的集体混合光 - 物质态。这种强耦合导致激发态性质发生根本性变化,包括多分子离域激发、修改后的势能面以及相对于非耦合分子显著改变的能级。强光 - 物质耦合对共价光化学的影响尚未得到充分探索。光开关经历可逆的分子内光反应,这些反应可以通过光谱学容易地监测。在这项工作中,我们研究强光 - 物质耦合对光学腔内光开关动力学的影响。重复先前的实验,螺吡喃/部花青光开关在腔内的光开关过程减速。然而,俘精酸酐光开关显示出相反的效果,强耦合加速了光开关过程。虽然修改后的部花青开关可以通过辐射衰减率的变化或腔内光量来解释,但修改后的俘精酸酐开关动力学表明激发态反应动力学有直接变化。