首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Aggregation-Induced Plasmon Coupling-Enhanced One- and Two-Photon Excitation Fluorescence by Silver Nanoparticles
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Aggregation-Induced Plasmon Coupling-Enhanced One- and Two-Photon Excitation Fluorescence by Silver Nanoparticles

机译:聚集诱导的等离子体偶联 - 通过银纳米颗粒增强一种和双光子激发荧光

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Plasmon coupling-induced intense local electrical field in the gap of closely packed metal nanoparticles (NPs) has been known capable of significantly enhancing optical properties of chromophores. Here, we have investigated aggregation-induced plasmon coupling-enhanced one-photon excitation (1PE) and two-photon excitation (2PE) fluorescence of dyes using Ag NPs of three different sizes (20, 36, and 48 nm). The fluorescence of a model dye, Rhodamine B isothiocyanate (RiTC), was prequenched by attaching to Ag NPs and subsequently enhanced upon forming aggregates of Ag NPs. It was found that aggregates of larger sized Ag NPs gave larger 1PE and 2PE fluorescence enhancement on the basis of free dyes, while aggregates of smaller counterparts displayed larger enhancement on the basis of the corresponding prequenched ones. 1PE and 2PE fluorescence were enhanced by 2.5- and 10.2-fold by aggregated 48 nm Ag NPs compared to free dyes and by 8.0- and 22.5-fold by aggregated 20 nm Ag NPs compared to the quenched ones, respectively. This scheme achieved fluorescence enhancement significantly beyond the level of fluorescence recovery, much larger than conventional turn-on fluorescence probes, which is attractive for developing sensitive fluorescence turn-on-based detection with reduced background.
机译:已知能够显着提高发色团的光学性质,已知等离子体耦合诱导的强烈局部电场在紧密包装的金属纳米颗粒(NPS)中。这里,使用三种不同尺寸(20,36和48nm)的Ag NP,我们研究了染料的聚集诱导的等离子体偶联增强的单光子激发(1Pe)和双光子激发(2Pe)荧光。通过将Ag NPS连接到Ag NPs并随后在形成Ag NPS的聚集体上进行预防通过连接到Ag NPS,预防模型染料的荧光罗丹明B异硫氰酸酯(RITC)。发现较大尺寸的Ag NPS的聚集体基于自由染料给出较大的1PE和2PE荧光增强,而较小的对应物的聚集体基于相应的预断管的基于较大的增强。通过分别通过聚集的48nm Ag nps和通过聚集的20nm Ag nps与骤冷的20nmg nps相比,通过聚集的48nm ag nps来增强2.5-和10.2倍,通过聚集的染料和22.5倍的增强。该方案显着实现了超出荧光恢复水平的荧光增强,比常规导通荧光探针大得多,这对于在减少的背景下发育敏感的荧光导数检测是有吸引力的。

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