论文标题

纳米流体Fabry-p {é}腐烂腔中的电荷转移化学反应

Charge-Transfer Chemical Reactions in Nanofluidic Fabry-P{é}rot Cavities

论文作者

Mauro, L, Caicedo, K, Jonusauskas, G, Avriller, Rémi

论文摘要

我们研究了局限纳米流体fabry-p {é}腐烂腔内的分子种群的化学反应性。由于强烈的光 - 物质相互作用在谐振电磁腔模式与限值分子的电偶极矩之间形成,因此形成了极化。前者穿着环境振动和旋转溶剂自由度的打扮。我们称之为由其环境激发云打扮的北极星“反应量”,因为它进一步发生了化学反应。我们表征了反应子形成如何修饰涉及基本电荷转移过程的光异构化学反应的动力学。我们表明,反应驱动力和重组能通过反应物浓度,真空狂犬分裂和Fabry-p {é}腐烂腔频率和靶向电子过渡之间的de键进行了调制。最后,我们计算了整个光化学反应的超快皮秒动力学。我们预测,尽管光腔损失和溶剂介导的非辐射性弛豫,但在最新的泵探针实验中可以找到反应子形成的可测量特征。

We investigate the chemical reactivity of molecular populations confined inside a nanofluidic Fabry-P{é}rot cavity. Due to strong light-matter interactions developing between a resonant electromagnetic cavity-mode and the electric dipole moment of the confined molecules, a polariton is formed. The former gets dressed by environmental vibrational and rotational degrees of freedom of the solvent. We call the resulting polariton dressed by its cloud of environmental excitation a ''reacton'', since it further undergoes chemical reactions. We characterize how the reacton formation modifies the kinetics of a photoisomerization chemical reaction involving an elementary charge-transfer process. We show that the reaction driving-force and reorganization energy are both modulated optically by the reactant concentration, the vacuum Rabi splitting and the de-tuning between the Fabry-P{é}rot cavity frequency and targeted electronic transition. Finally, we compute the ultrafast picosecond dynamics of the whole photochemical reaction. We predict that despite optical cavity losses and solvent-mediated non-radiative relaxation, measurable signatures of the reacton formation can be found in state-of-the-art pump-probe experiments.

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