Munkhbat Battulga, Wersäll Martin, Baranov Denis G, Antosiewicz Tomasz J, Shegai Timur
Department of Physics, Chalmers University of Technology, 412 96 Göteborg, Sweden.
Centre of New Technologies, University of Warsaw, Banacha 2c, 02-097 Warsaw, Poland.
Sci Adv. 2018 Jul 6;4(7):eaas9552. doi: 10.1126/sciadv.aas9552. eCollection 2018 Jul.
Intermixed light-matter quasi-particles-polaritons-have unique optical properties owing to their compositional nature. These intriguing hybrid states have been extensively studied over the past decades in a wide range of realizations aiming at both basic science and emerging applications. However, recently, it has been demonstrated that not only optical but also material-related properties, such as chemical reactivity and charge transport, may be significantly altered in the strong coupling regime of light-matter interactions. We show that a nanoscale system, composed of a plasmonic nanoprism strongly coupled to excitons in a J-aggregated form of organic chromophores, experiences modified excited-state dynamics and, therefore, modified photochemical reactivity. Our experimental results reveal that photobleaching, one of the most fundamental photochemical reactions, can be effectively controlled and suppressed by the degree of plasmon-exciton coupling and detuning. In particular, we observe a 100-fold stabilization of organic dyes for the red-detuned nanoparticles. Our findings contribute to understanding of photochemical properties in the strong coupling regime and may find important implications for the performance and improved stability of optical devices incorporating organic dyes.
混合的光与物质准粒子——极化激元——因其组成性质而具有独特的光学特性。在过去几十年里,为了基础科学和新兴应用等广泛目标,这些引人入胜的混合态在多种实现方式中得到了广泛研究。然而,最近有研究表明,在光与物质相互作用的强耦合 regime 中,不仅光学性质,而且与材料相关的性质,如化学反应性和电荷传输,都可能发生显著改变。我们表明,一个由与 J 聚集形式的有机发色团中的激子强烈耦合的等离子体纳米棱镜组成的纳米级系统,经历了改变的激发态动力学,因此也有改变的光化学反应性。我们的实验结果表明,光漂白,这一最基本的光化学反应之一,可以通过等离子体激元 - 激子耦合程度和失谐有效地控制和抑制。特别是,我们观察到对于红失谐纳米粒子,有机染料的稳定性提高了 100 倍。我们的发现有助于理解强耦合 regime 中的光化学性质,并可能对包含有机染料的光学器件的性能和稳定性提升具有重要意义。