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A New Cr3+ Electrochemical Sensor Based on ATNA/Nafion/Glassy Carbon Electrode

机译:基于ATNA / Nafion /玻璃碳电极的新型Cr3 +电化学传感器

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摘要

A new electrochemical sensor of metal cation in an aqueous solution based on homobifunctional tridentate disulfide Schiff base and named 1,1′-(-((disulfanediylbis(2,1-phenylene))bis(azaneylylidene))bis(methaneylylidene))bis(naphthalene-2-ol) (ATNA) was easily obtained quantitatively from the condensation reaction of 2-hydroxy-1-naphthaldehyde and -aminothiophenol, and then fully characterized by spectroscopic techniques for structure elucidation. The molecular structure of ATNA was also confirmed by a single-crystal X-ray diffraction study to reveal a new conformation in which the molecule was stabilized by the O–H…N type intramolecular hydrogen bonding interactions in both moieties. The ATNA was used as a selective electrochemical sensor for the detection of chromium ion (Cr ). A thin film of ATNA was coated on to the flat surface of glassy carbon electrode (GCE) followed by 5 % ethanolic Nafion in order to make the modified GCE (ATNA/Nafion/GCE) as an efficient and sensitive electrochemical sensor. It was found to be very effective and selective against Cr cations in the company of other intrusive heavy metal cations such as Al , Ce , Co , Cu , Ga , Hg , Mn , Pb , and Y . The detection limit at 3 S/N was found to be 0.013 nM for Cr ions within the linear dynamic range (LDR) (0.1 nM–10.0 mM) of Cr ions with r = 0.9579. Moreover; this work instigates a new methodology for developing the sensitive as well as selective electrochemical toxic cationic sensors in the field of environmental and health care.
机译:一种基于同双功能三齿二硫化物席夫碱的水溶液中金属阳离子的新型电化学传感器,命名为1,1'-(-(((二硫代二基双(2,1-亚苯基))双(氮杂亚烷基))双(甲叉))通过2-羟基-1-萘醛与-氨基硫酚的缩合反应可以很容易地定量获得萘-2-醇(ATNA),然后通过光谱技术对其结构进行充分表征。通过单晶X射线衍射研究也证实了ATNA的分子结构,揭示了一个新的构象,其中该分子通过两个部分中的O–H…N型分子内氢键相互作用而稳定。 ATNA用作选择性电化学传感器,用于检测铬离子(Cr)。将ATNA薄膜涂覆在玻璃碳电极(GCE)的平坦表面上,然后在5%的乙醇Nafion上涂覆,以使修饰的GCE(ATNA / Nafion / GCE)成为一种高效而灵敏的电化学传感器。在其他侵入性重金属阳离子(如Al,Ce,Co,Cu,Ga,Hg,Mn,Pb和Y)的陪伴下,它被发现对Cr阳离子是非常有效和选择性的。铬离子的线性动态范围(LDR)(0.1 nM–10.0 mM)在r = 0.9579的条件下,在3 S / N时的Cr离子检测限为0.013 nM。此外;这项工作为在环境和卫生保健领域开发敏感的以及选择性的电化学有毒阳离子传感器开发了一种新方法。

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