首页> 外文OA文献 >Sensitive Hg2+ Sensing via Quenching the Fluorescence of the Complex between Polythymine and 5,10,15,20-tetrakis(N-methyl-4-pyridyl) Porphyrin (TMPyP)
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Sensitive Hg2+ Sensing via Quenching the Fluorescence of the Complex between Polythymine and 5,10,15,20-tetrakis(N-methyl-4-pyridyl) Porphyrin (TMPyP)

机译:敏感HG2 +通过淬灭多邻值和5,10,15,20-四(N-甲基-4-吡啶基)卟啉(TMPYP)之间复合物的荧光的感测

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摘要

The interaction between polythymine (dTn) and 5,10,15,20-tetrakis(N-methyl-4-pyridyl) porphyrin (TMPyP) was systematically studied using various techniques. dTn remarkably enhanced the fluorescence intensity of TMPyP as compared to other oligonucleotides. The enhanced fluorescence intensity and the shift of the emission peaks were ascribed to the formation of a π-π complex between TMPyP and dTn. And the quenching of the dTn-enhanced fluorescence by Hg2+ through a synergistic effect occurs due to the heavy atom effect. The binding of Hg2+ to TMPyP plays an important role in the Hg-TMPyP-dT30 ternary complex formation. A TMPyP-dT30-based Hg2+ sensor was developed with a dynamic range of Hg2+ from 5 nM to 100 nM. The detection limit of 1.3 nM was low enough for Hg2+ determination. The sensor also exhibited good selectivity against other metal ions. Experiments for tap water and river water demonstrated that the detection method was applicable for Hg2+ determination in real samples. The Hg2+ sensor based on oligonucleotide dT30-enhanced TMPyP fluorescence was fast and low-cost, presenting a promising platform for practical Hg2+ determination.
机译:使用各种技术系统地研究了多丙酮(DTN)和5,10,15,20-四(N-甲基-4-吡啶基)卟啉(TMPYP)之间的相互作用。与其他寡核苷酸相比,DTN显着提高了TMPYP的荧光强度。增强的荧光强度和发射峰的偏移归因于TMPYP和DTN之间的π-π复合物。并且由于重度原子效应,通过协同效应淬火通过HG2 +通过协同效应淬火。 HG2 +至TMPYP的结合在HG-TMPYP-DT30三元复杂的形成中起着重要作用。基于TMPYP-DT30的HG2 +传感器是开发的,动态范围为HG2 +从5nm到100nm。对于HG2 +测定,1.3nm的检出限为1.3nm。传感器还表现出对其他金属离子的良好选择性。自来水和河水的实验表明,检测方法适用于实际样品中的HG2 +测定。基于寡核苷酸DT30增强的TMPYP荧光的HG2 +传感器快速且低成本,呈现了实际HG2 +测定的有希望的平台。

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