Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Institute of Molecular Science, Shanxi University, Taiyuan, 030006, People's Republic of China.
Mikrochim Acta. 2019 Jul 17;186(8):541. doi: 10.1007/s00604-019-3658-4.
DNA-templated silver nanoclusters (DNA-Ag NCs) with cytosine (C)-rich sequences (four or more segments of consecutive (2-5) C-bases) were synthesized. They display green and/or orange/red emissions under different excitation wavelengths. There is indication that more consecutive C-bases lead to longer emission wavelengths. The ratio of the red and green emissions of the DNA-Ag NCs depends on whether the NCs were synthesized under acidic or basic conditions. We also prepared the DNA copper/silver nanoclusters (DNA-Cu/Ag NCs) which can be synthesized in shorter time and display higher stability. The DNA-Cu/Ag NCs, under 470 nm photoexcitation, always display green emission, with a peak at 550 nm, irrespective of whether being prepared under acidic or basic conditions. The fluorescence of the Cu/Ag NCs is selectively quenched by Hg(II) ions which can be quantified by this nanoprobe with a detection limit as low as 2.4 nM. The quenching mechanism was studied by Stern-Volmer plots and lifetime studies which revealed that both static and dynamic quenching are operative. Graphical abstract Schematic presentation of fluorescent DNA-Ag nanoclusters (NCs) exhibiting red and green emission under different pH values, and green emissive DNA-Cu/Ag NCs for sensitive and rapid detection of Hg.
基于富含胞嘧啶(C)序列(四个或更多连续的(2-5)C 碱基片段)的 DNA 模板合成了银纳米团簇(DNA-Ag NCs)。它们在不同的激发波长下显示出绿色和/或橙色/红色发射。有迹象表明,更多连续的 C 碱基导致更长的发射波长。DNA-Ag NCs 的红色和绿色发射的比例取决于 NCs 是在酸性还是碱性条件下合成的。我们还制备了 DNA 铜/银纳米团簇(DNA-Cu/Ag NCs),它们可以在更短的时间内合成,并显示出更高的稳定性。在 470nm 光激发下,DNA-Cu/Ag NCs 总是显示绿色发射,峰值在 550nm,无论在酸性还是碱性条件下制备。Cu/Ag NCs 的荧光被 Hg(II)离子选择性猝灭,该纳米探针的检测限低至 2.4nM。通过 Stern-Volmer 图和寿命研究研究了猝灭机制,结果表明静态和动态猝灭都起作用。