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首页> 外文期刊>Journal of physical chemistry letters >Magic Numbers in DNA-Stabilized Fluorescent Silver Clusters Lead to Magic Colors
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Magic Numbers in DNA-Stabilized Fluorescent Silver Clusters Lead to Magic Colors

机译:DNA稳定的荧光银簇中的幻数导致幻彩

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摘要

DNA-stabilized silver clusters are remarkable for the selection of fluorescence color by the sequence of the stabilizing DNA oligomer. Yet despite a growing number of applications that exploit this property, no large-scale studies have probed origins of cluster color or whether certain colors occur more frequently than others. Here we employ a set of 684 randomly chosen 10-base oligomers to address these questions. Rather than a flat distribution, we find that specific color bands dominate. Cluster size data indicate that these “magic colors” originate from the existence of magic numbers for DNA-stabilized silver clusters, which differ from those of spheroidal gold clusters stabilized by small-molecule ligands. Elongated cluster structures, enforced by multiple base ligands along the DNA, can account for both magic number sizes and color variation around peak wavelength populations.
机译:DNA稳定的银簇对于通过稳定DNA寡聚物的序列选择荧光颜色而言非常出色。然而,尽管利用这种特性的应用程序越来越多,但没有大规模的研究探讨簇色的起源或某些颜色是否比其他颜色更频繁地出现。在这里,我们采用一组684个随机选择的10个碱基的低聚物来解决这些问题。我们发现特定的色带占主导地位,而不是平坦的分布。簇的大小数据表明,这些“魔术色”源自DNA稳定化的银簇的幻数,而魔术数与通过小分子配体稳定的球形金簇的幻数不同。沿着DNA的多个碱基配体强制形成的细长簇结构,可以解释魔术数大小和峰值波长群体周围的颜色变化。

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