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The light-up fluorescence of AgNCs in a 'DNA bulb'

机译:DNA AgNCs发光荧光的“灯泡”

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摘要

In this presented work, a series of designs and experiments have been constructed to study how a DNA structure affected the fluorescence of silver nanoclusters (AgNCs). A bulb-like DNA structure was firstly used as the synthesizing template, and bright green-emitting AgNCs were obtained with a quantum yield of 17.2. The DNA bulb structure was assembled using three single-stranded oligonucleotides (ssDNAs), with a flexible ssDNA part serving as the filament. The results seemed intriguing as luminous AgNCs could be obtained only when the complete spatial structure was formed. To further investigate the role of the bulb structure, thirteen cytosine-rich sequences were employed as the filament, respectively. Interestingly, the fluorescence intensities of AgNCs were all enhanced after the filament ssDNA was integrated into the bulb structure. The enhancement was as much as 175.2-fold, and the minimum enhancement was 1.3-fold. Spectral analyses were then conducted to give an understanding of the role of cytosine. When the sequences in the bulb shell were changed, the DNA bulb structure still showed an enhancing effect. Finally, the green-emitting AgNCs were utilized toward the selective detection of Hg2+ to demonstrate potential applications.
机译:在这个工作,和一系列的设计实验是研究如何建造的DNA结构影响荧光的银制备(AgNCs)。首先是用作合成模板,和明亮的green-emitting AgNCs量子产率的17.2%。使用三个结构组装单链寡核苷酸(ssDNAs),灵活ssDNA一部分作为灯丝。结果看起来有趣的发光AgNCs只有当获得完整的空间结构形成。灯泡的角色结构,十三被聘为cytosine-rich序列分别灯丝。AgNCs都的荧光强度增强后,灯丝ssDNA集成到灯泡的结构。多175.2倍,最低增强是1.3倍。给的角色的理解胞嘧啶。稍作改变,DNA灯泡结构还显示吗一个增强的效果。AgNCs是利用选择性检测Hg2 +展示的潜力应用程序。

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