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首页> 外文期刊>ACS Omega >Hg2+ Sensor Development Based on (E)-N′-Nitrobenzylidene-Benzenesulfonohydrazide (NBBSH) Derivatives Fabricated on a Glassy Carbon Electrode with a Nafion Matrix
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Hg2+ Sensor Development Based on (E)-N′-Nitrobenzylidene-Benzenesulfonohydrazide (NBBSH) Derivatives Fabricated on a Glassy Carbon Electrode with a Nafion Matrix

机译:基于( E )- N '-硝基苄叉基-苯磺酰肼(NBBSH)衍生物的Hg 2 + 传感器的开发Nafion矩阵

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摘要

Three novel derivatives of (E )-N ′-nitrobenzylidene-benzenesulfonohydrazide (NBBSH) were synthesized by a condensation method from nitrobenzaldehyde and benzenesulfonylhydrazine reactants in low to moderate yields, which crystallized in methanol, acetone, ethyl acetate, and ethanol. NBBSH derivatives were totally characterized using various spectroscopic techniques, such as Fourier transform infrared spectroscopy, ultraviolet–visible spectroscopy, proton nuclear magnetic resonance spectroscopy (~(1)H NMR), and carbon-13 nuclear magnetic resonance (~(13)C NMR) spectroscopy. The molecular structure of the NBBSH derivates was confirmed by the single crystal X-ray diffraction method and used for potential detection of a selective heavy metal ion, mercury (Hg~(2+)), by a reliable I –V method. A thin coating of NBBSH derivatives was deposited on a glassy carbon electrode (surface area = 0.0316 cm~(2)) with a binder (nafion) coating to modify a sensitive and selective Hg~(2+) sensor with a short response time in phosphate buffer. The modified cationic sensor exhibited enhanced chemical performances, such as higher sensitivity, linear dynamic range, limit of detection (LOD), reproducibility, and long-term stability toward Hg~(2+). The calibration curve was found to be linear over a wide range of Hg~(2+) concentrations (100.0 pM–100.0 mM). The sensitivity and LOD were considered to be ~949.0 pA μM~(–1)cm~(–2) and 10.0 ± 1.0 pM (S/N = 3), respectively. The sensor was applied to the selective measurement of Hg~(2+) in spiked water samples to give acceptable and satisfactory results.
机译:通过缩合方法,由硝基苯甲醛和苯磺酰肼反应物以低至中等的收率合成了(e)-N'-硝基亚苄基-苯磺酰肼(NBBSH)的三种新型衍生物,并在甲醇,丙酮,乙酸乙酯,和乙醇。使用各种光谱技术对NBBSH衍生物进行了全面表征,例如傅立叶变换红外光谱,紫外可见光谱,质子核磁共振光谱(〜(1)H NMR)和碳13核磁共振光谱(〜(13)C NMR)。 )光谱学。 NBBSH衍生物的分子结构通过单晶X射线衍射法确定,并通过可靠的 I – V方法。将NBBSH衍生物的薄涂层用粘合剂(nafion)涂层沉积在玻璃碳电极上(表面积= 0.0316 cm〜(2)),以在短时间内响应时间短的情况下修饰敏感且选择性的Hg〜(2+)传感器。磷酸盐缓冲液。改进的阳离子传感器表现出增强的化学性能,例如更高的灵敏度,线性动态范围,检测极限(LOD),重现性以及对Hg〜(2+)的长期稳定性。发现校准曲线在宽范围的Hg〜(2+)浓度(100.0 pM–100.0 mM)范围内是线性的。灵敏度和LOD分别被认为是〜949.0 pAμM〜(–1)cm〜(–2)和10.0±1.0 pM(S / N = 3)。该传感器用于加标水样中Hg〜(2+)的选择性测定,结果令人满意。

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