论文标题

分子和光子场介导的电子转移耦合途径之间的干扰

Interference Between Molecular and Photon Field-Mediated Electron Transfer Coupling Pathways in Cavities

论文作者

Chowdhury, Sutirtha N., Zhang, Peng, Beratan, David N.

论文摘要

由于它为指导化学创造了新的机会,因此腔偏光量正在捕捉化学界的想象力。电子转移(ET)反应是最简单的反应之一,它们也支持生物能力。因此,在纳米级操纵和直接电子流的新概念策略对生物化学,能源科学,生物启发的材料科学和化学的兴趣广泛。我们表明,光腔可以调节供体桥桥(DBA)系统中的电子传递途径干扰和ET速率。当DBA电子转移系统与空腔光子场耦合时(可能是与分子电子过渡的异议)时,我们得出了速率,强调了新型的空腔诱导的途径与分子电子耦合途径的干扰,因为这些干扰允许新型的ET速率调节。我们还检查了低腔和高空腔频率状态的ET动力学,因为光 - 偶联强度各不相同。腔诱导的和固有的分子耦合途径之间的干扰是由腔体性能定义的,包括腔频率和光 - 偶联相互作用强度。因此,操纵腔诱导的干扰化学耦合途径提供了直接在纳米级的电荷流动的新策略。

Cavity polaritonics is capturing the imagination of the chemistry community because of the novel opportunities it creates to direct chemistry. Electron transfer (ET) reactions are among the simplest reactions, and they also underpin bioenergetics. As such, new conceptual strategies to manipulate and direct electron flow at the nanoscale are of wide-ranging interest in biochemistry, energy science, bio-inspired materials science, and chemistry. We show that optical cavities can modulate electron transfer pathway interferences and ET rates in donor-bridge-acceptor (DBA) systems. We derive the rate for DBA electron transfer systems when they are coupled with cavity photon fields (which may be off- or on-resonance with a molecular electronic transition), emphasizing novel cavity-induced pathway interferences with the molecular electronic coupling pathways, as these interferences allow a new kind of ET rate tuning. We also examined the ET kinetics for both low and high cavity frequency regimes as the light-matter coupling strength is varied. The interference between the cavity-induced and intrinsic molecular coupling pathway interference is defined by the cavity properties, including the cavity frequency and the light-matter coupling interaction strength. Thus, manipulating the cavity-induced interferences with the chemical coupling pathways offers new strategies to direct charge flow at the nanoscale.

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