用于远场单分子荧光检测的脉冲型宽带多光子激发。

IF 2.4 3区 化学 Q3 CHEMISTRY, ANALYTICAL Methods and Applications in Fluorescence Pub Date : 2023-01-19 DOI:10.1088/2050-6120/aca87f
David Nobis, Henry G Sansom, Steven W Magennis
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引用次数: 1

摘要

荧光的多光子激发与共振(单光子)激发相比具有许多潜在的优点,但该方法尚未广泛用于超灵敏应用。我们最近描述了一种单分子多光子激发的方法,该方法使用脉冲整形器压缩和定制来自超快宽带激光器的脉冲,以优化非线性激发后的亮度和信本比。在这里,我们提供了设置的详细描述,并通过优化普通荧光团罗丹明110在单分子水平上的双光子荧光来说明其使用和潜力。我们还表明,用荧光核碱基类似物tC标记的DNA寡核苷酸可以使用双光子FCS检测到,而单光子激发会导致快速光漂白。提高信号背景比和降低达到给定亮度所需的入射功率的能力可以应用于任何荧光物种的多光子激发,从具有低多光子横截面的小分子到最亮的纳米颗粒。
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Pulse-shaped broadband multiphoton excitation for single-molecule fluorescence detection in the far field.
Multiphoton excitation of fluorescence has many potential advantages over resonant (one-photon) excitation, but the method has not found widespread use for ultrasensitive applications. We recently described an approach to the multiphoton excitation of single molecules that uses a pulse shaper to compress and tailor pulses from an ultrafast broadband laser in order to optimise the brightness and signal-to-background ratio following non-linear excitation. Here we provide a detailed description of the setup and illustrate its use and potential by optimising two-photon fluorescence of a common fluorophore, rhodamine 110, at the single-molecule level. We also show that a DNA oligonucleotide labelled with a fluorescent nucleobase analogue, tC, can be detected using two-photon FCS, whereas one-photon excitation causes rapid photobleaching. The ability to improve the signal-to-background ratio and to reduce the incident power required to attain a given brightness can be applied to the multiphoton excitation of any fluorescent species, from small molecules with low multiphoton cross sections to the brightest nanoparticles.
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来源期刊
Methods and Applications in Fluorescence
Methods and Applications in Fluorescence CHEMISTRY, ANALYTICALCHEMISTRY, PHYSICAL&n-CHEMISTRY, PHYSICAL
CiteScore
6.20
自引率
3.10%
发文量
60
期刊介绍: Methods and Applications in Fluorescence focuses on new developments in fluorescence spectroscopy, imaging, microscopy, fluorescent probes, labels and (nano)materials. It will feature both methods and advanced (bio)applications and accepts original research articles, reviews and technical notes.
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