费斯特共振能量转移
接受者
荧光
光漂白
共振感应耦合
材料科学
共振(粒子物理)
光电子学
法布里-珀罗干涉仪
光化学
能量转移
光学
分子物理学
化学
原子物理学
物理
凝聚态物理
波长
作者
Saeed Nosrati,Frank Wackenhut,Christoph Kertzscher,Marc Brecht,Alfred J. Meixner
标识
DOI:10.1021/acs.jpcc.3c02566
摘要
We study three-color Förster resonance energy transfer (triple FRET) between three spectrally distinct fluorescent dyes, a donor and two acceptors, which are embedded in a single polystyrene nanosphere. The presence of triple FRET energy transfer is confirmed by selective acceptor photobleaching. We show that the fluorescence lifetimes of the three dyes are selectively controlled using the Purcell effect by modulating the radiative rates and relative fluorescence intensities when the nanospheres are embedded in an optical Fabry–Pérot microcavity. The strongest fluorescence intensity enhancement for the second acceptor can be observed as a signature of the FRET process by tuning the microcavity mode to suppress the intermediate dye emission and transfer more energy from donor to the second acceptor. Additionally, we show that the triple FRET process can be modeled by coupled rate equations, which allow to estimate the energy transfer rates between donor and acceptors. This fundamental study has the potential to extend the classical FRET approach for investigating complex systems, e.g., optical energy switching, photovoltaic devices, light-harvesting systems, or in general interactions between more than two constituents.
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