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双光子激发下等离子体诱导双模荧光增强的效率

Efficiency of Plasmon-Induced Dual-Mode Fluorescence Enhancement upon Two-Photon Excitation.

作者信息

Shokova Maria A, Bochenkov Vladimir E

机构信息

Department of Chemistry, Lomonosov Moscow State University, 119991 Moscow, Russia.

出版信息

Nanomaterials (Basel). 2021 Dec 8;11(12):3334. doi: 10.3390/nano11123334.

Abstract

Anisotropic noble metal nanoparticles supporting more than one localized surface plasmon resonance can be tailored for efficient dual-mode fluorescence enhancement by ensuring an adequate coupling to both absorption and emission bands of fluorophores. This approach is naturally extended to two-photon excitation fluorescence, where a molecule is excited by simultaneous nonlinear absorption of two photons. However, the relative impact of plasmon coupling to excitation and emission on the overall fluorescence enhancement can be very different in this case. Here, by using the finite-difference time-domain method, we study the two-photon excitation fluorescence of near-infrared fluorescent protein (NirFP) eqFP670, which is the most red-shifted NirFP to date, in proximity to a silver nanobar. By optimizing the length and aspect ratio of the particle, we reach a fluorescence enhancement factor of 103. We show that the single mode coupling regime with highly tuned near-field significantly outperforms the dual-mode coupling enhancement. The plasmon-induced amplification of the fluorophore's excitation rate becomes of utmost importance due to its quadratic dependence on light intensity, defining the fluorescence enhancement upon two-photon excitation. Our results can be used for the rational design of hybrid nanosystems based on NirFP and plasmonic nanoparticles with greatly improved brightness important for developing whole-body imaging techniques.

摘要

通过确保与荧光团的吸收和发射带充分耦合,可以定制支持多个局域表面等离子体共振的各向异性贵金属纳米颗粒,以实现高效的双模荧光增强。这种方法自然地扩展到双光子激发荧光,即分子通过同时非线性吸收两个光子而被激发。然而,在这种情况下,等离子体与激发和发射的耦合对整体荧光增强的相对影响可能非常不同。在这里,我们使用时域有限差分法,研究了最红移的近红外荧光蛋白(NirFP)eqFP670在银纳米棒附近的双光子激发荧光。通过优化颗粒的长度和纵横比,我们实现了103的荧光增强因子。我们表明,具有高度调谐近场的单模耦合机制明显优于双模耦合增强。由于荧光团激发速率与光强的二次方依赖关系,等离子体诱导的荧光团激发速率放大对于双光子激发时的荧光增强至关重要。我们的结果可用于基于NirFP和等离子体纳米颗粒的混合纳米系统的合理设计,这对于开发全身成像技术具有重要意义,可大大提高亮度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df59/8705879/e376dfadcbbc/nanomaterials-11-03334-g001.jpg

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