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Highly efficient FRET-based light-harvesting using nanocrystals

机译:使用纳米晶体的高效基于FRET的光收集

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Dye molecules are widely used for biolabeling in molecular biology because of their high quantum efficiency and stability. Their small size (only a few nanometers) enables their use in bioimaging and biodetection of molecular features, for example, for double stranded deoxyribonucleic acid (DNA). However their narrow absorption spectra (e.g., 450–600 nm for Rhodamine B) limit their efficient pumping beyond their absorption range and place constraints on their use in some important applications such as spectral multiplexing, in which multiple dyes of different colors are simultaneously excited by a single optical source. To effectively extend the absorption range of such dye molecules, nonradiative Förster resonance energy transfer (FRET) can be utilized to transfer excitation energy from nanocrystal donors to acceptor dyes [1].
机译:染料分子因其高量子效率和稳定性而被广泛用于分子生物学中的生物标记。它们的体积小(仅几纳米),使其可以用于生物成像和分子特征的生物检测,例如用于双链脱氧核糖核酸(DNA)。但是,它们的吸收光谱窄(例如,若丹明B的450-600 nm)限制了其有效泵浦作用超出其吸收范围,并限制了它们在某些重要应用(例如光谱多路复用)中的使用,在该应用中,不同颜色的多种染料同时被激发单个光源。为了有效地扩展此类染料分子的吸收范围,可以利用非辐射福斯特共振能量转移(FRET)将激发能从纳米晶体供体转移到受体染料[1]。

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