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A new class of fluorescent-dots: long luminescent lifetime bio-dots self-assembled from DNA at low temperatures

机译:一类新的荧光点:长的发光寿命生物点在低温下由DNA自组装

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摘要

Quantum-dots (QDs) have fuelled up intensive research efforts over the past two decades. Nevertheless, currently developed two classes of fluorescent QDs, colloidal semiconductor QDs and carbonaceous QDs suffer from either toxicity or short luminescence lifetime. Here, we report a new class of fluorescent bio-dots that are derived from DNA via self-assembly at low temperatures down to 80°C, which has an optical bandgap of 3.4 eV, and in particular possesses strong photoluminescence with a much longer luminescence lifetime (τ1 = 10.44 ns) than the carbonaceous QDs (τ1 < 0.5 ns). It is discovered that it is the interactions of base pair cytosines with each other to form sp2 carbon–like centers as luminescence centers or chromophores for the photoluminescence. The use of bio-dots in cell imaging with strong photoluminescence signal and good biocompatibility demonstrates great potentials of broad biological and optoelectronic applications.
机译:在过去的二十年中,量子点(QD)推动了深入的研究工作。然而,当前开发的两类荧光量子点,胶体半导体量子点和碳质量子点都具有毒性或发光寿命短的缺点。在这里,我们报告了一类新型的荧光生物点,它们是在低至80°C的低温下通过自组装从DNA衍生而来的,其光学带隙为3.4 eV,特别是具有较强的光致发光和更长的发光时间寿命(τ1= 10.44 ns)比碳质量子点(τ1<0.5 ns)。发现是碱基对胞嘧啶彼此相互作用形成sp 2 碳样中心作为光致发光的发光中心或发色团。在具有强光致发光信号和良好生物相容性的细胞成像中使用生物点具有广泛的生物和光电应用潜力。

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