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Dual-color nanoscale assemblies of structurally stable, few-atom silver clusters, as reported by fluorescence resonance energy transfer

机译:结构稳定,原子数少的银团簇的双色纳米级组件,如荧光共振能量转移所报道

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摘要

We develop approaches to hold fluorescent silver clusters composed of only 10-20 atoms in nanoscale proximity, while retaining the individual structure of each cluster. This is accomplished using DNA clamp assemblies that incorporate a 10 atom silver cluster and a 15 or 16 atom silver cluster. Thermally modulated fluorescence resonance energy transfer (FRET) verifies assembly formation. Comparison to F?rster theory, using measured spectral overlaps, indicates that the DNA clamps hold clusters within roughly 5 to 6 nm separations, in the range of the finest resolutions achievable on DNA scaffolds. The absence of spectral shifts in dual-cluster FRET pairs, relative to the individual clusters, shows that select few-atom silver clusters of different sizes are sufficiently stable to retain structural integrity within a single nanoscale DNA construct. The spectral stability of the cluster persists in a FRET pair with an organic dye molecule, in contrast to the blue-shifted emission of the dye.
机译:我们开发了在纳米级附近仅保留10-20个原子的荧光银团簇的方法,同时保留了每个团簇的单独结构。使用结合了10个原子的银簇和15或16个原子的银簇的DNA钳夹组件可实现此目的。热调制荧光共振能量转移(FRET)验证了组件的形成。与Fsterster理论的比较,使用测得的光谱重叠,表明DNA钳将簇保持在大约5至6 nm的间隔内,这是在DNA支架上可获得的最高分辨率的范围内。相对于单个簇,双簇FRET对中不存在光谱偏移,这表明不同大小的少数几个原子银簇足以稳定地保留单个纳米级DNA构建体中的结构完整性。与染料的蓝移发射相反,簇的光谱稳定性在与有机染料分子成对的FRET中持续存在。

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