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首页> 外文期刊>Bulletin of the Korean Chemical Society >Branched DNA-based Synthesis of Fluorescent Silver Nanocluster
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Branched DNA-based Synthesis of Fluorescent Silver Nanocluster

机译:基于分支DNA的荧光银纳米簇的合成

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While single strand DNAs have been widely used for the scaffold of brightly fluorescent silver nanoclusters (Ag NCs), double strand DNAs have not been as successful. Herein, we report a novel synthetic approach for bright Ag NCs using branched double strand DNAs as the scaffolds for synthesis. X-shaped DNA (X-DNA) and Y-shaped DNA (Y-DNA) effectively stabilized Ag NCs, and both X-DNA and Y-DNA resulted in brightly fluorescent Ag NCs. The concentration and molar ratio of silver and DNA were found important for the fluorescence efficiency. The brightest Ag NC with the photoluminescence quantum efficiency of 19.8% was obtained for the reaction condition of 10 uM X-DNA, 70 uM silver, and the reaction time of 48 h. The fluorescence lifetime was about 2 ns for the Ag NCs and was also slightly dependent on the synthetic condition. Addition of Cu ions at the Ag NC preparations resulted in the quenching of Ag NC fluorescence, which was different to the brightening cases of single strand DNA stabilized Ag NCs.
机译:尽管单链DNA已广泛用于亮荧光银纳米簇(Ag NCs)的支架,但双链DNA却没有那么成功。在这里,我们报告了一种新颖的合成方法,用于使用分支双链DNA作为合成支架的亮Ag NCs。 X形DNA(X-DNA)和Y形DNA(Y-DNA)有效地稳定了Ag NCs,X-DNA和Y-DNA都产生了明亮的荧光Ag NCs。发现银和DNA的浓度和摩尔比对荧光效率很重要。在10uM X-DNA,70uM银和48h反应时间的条件下,获得了最亮的Ag NC,其光致发光量子效率为19.8%。 Ag NCs的荧光寿命约为2 ns,并且还略微取决于合成条件。在Ag NC制备物中添加Cu离子会导致Ag NC荧光猝灭,这与单链DNA稳定的Ag NC的增亮情况不同。

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