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首页> 外文期刊>New Journal of Chemistry >Development of a selective and sensitive Ga3+ sensor for environmental safety: a comparative study of cyclohexyl and aromatic bis-sulphonamide fabricated glassy carbon electrodes
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Development of a selective and sensitive Ga3+ sensor for environmental safety: a comparative study of cyclohexyl and aromatic bis-sulphonamide fabricated glassy carbon electrodes

机译:开发用于环境安全的选择性和敏感的GA3 +传感器:环己基和芳香族双磺酰胺制造的玻碳电极的比较研究

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摘要

Our environment is becoming more polluted due to the commercial applications of toxic chemicals and heavy metal cations. So, for the sensing of heavy metal cations in aqueous solution N,N-(cyclohexane-1,2-diyl)bis(2,5-dimethoxybenzenesulfonamide) CDBDMBS (3a) and N,N-(1,2-phenylene)bis(2,5-dimethoxybenzenesulfonamide) PBDMBS (3b) were synthesized in this work. Spectroscopic techniques, such as UV/Vis spectroscopy, Fourier transform infrared (FTIR) spectroscopy, and nuclear magnetic resonance (H-1-NMR & C-13-NMR) spectroscopy, and single crystal X-ray diffraction studies, were carried out for their structure elucidation. After that, a simple, cheap and reliable electrochemical technique was carried out in order to check the affinity of our newly designed chelating agents towards various heavy metal cations (Ag+, As3+, Au3+, Ce2+, Cr3+, Ga3+, Hg2+, Pb2+ and Y3+) using a Keithley electrometer. For this purpose CDBDMBS and PBDMBS were fabricated with conducting Nafion binder on a glassy carbon electrode (GCE) for the development of sensitive and selective electrochemical sensors to probe the heavy metal cations in a phosphate buffer phase (pH = 7.0) in a short response time, qualitatively and quantitatively. It was found that CDBDMBS was very selective with good affinity for gallium cations after a comparative study between CDBDMBS/Nafion/GCE and PBDMBS/Nafion/GCE. Gallium is one of the various heavy metal cations in our ecosystem as an environmental pollutant. The analytical performance of CDBDMBS/Nafion/GCE was found to be very interesting in terms of sensitivity, stability, linear dynamic range and improved electrochemical performance towards Ga3+ ions. The calibration plot is linear (r(2) = 0.9006) over a large concentration range of Ga3+ ions (1.0 nM to 0.01 M) in addition to the sensitivity, limit of detection (at a SNR of 3) and limit of quantification that are found to be 3.955 x 10(-3) A M-1 cm(-2), 0.02 nM and 0.08 nM, respectively. This novel approach introduces a new and well organized system for the development of efficient sensors for toxic cationic electrochemicals in environmental and healthcare fields on a large scale. Therefore, this newly designed CDBDMBS/Nafion/GCE presents a cost effective compound that can be used as a feasible substitute for the detection and removal of Ga(3+)ions from water samples efficiently.
机译:由于有毒化学品和重金属阳离子的商业应用,我们的环境变得更加污染。因此,为了在水溶液中的重金属阳离子N,N-(环己烷-1,2-二基)双(2,5-二甲氧基苯甲酰胺)CDBDMBS(3A)和N,N-(1,2-苯基)BIS中的感测(2,5-二甲氧基苯磺酰胺)在这项工作中合成了PBDMBS(3B)。进行光谱技术,例如UV / VI光谱,傅里叶变换红外(FTIR)光谱和核磁共振(H-1-NMR&C-13-NMR)光谱和单晶X射线衍射研究他们的结构阐明。之后,进行简单,便宜和可靠的电化学技术,以检查我们新设计的螯合剂对各种重金属阳离子(Ag +,As3 +,Au3 +,Ce2 +,Cr3 +,Ga3 +,Hg2 +,Pb2 +和Y3 +)的亲和力使用keithley electoromet。为此目的,CDBDMBS和PBDMBS在玻璃状碳电极(GCE)上进行Nafion粘合剂,用于开发敏感和选择性电化学传感器,以便在短响应时间内探测磷酸盐缓冲相(pH = 7.0)中的重金属阳离子,定性和定量。结果发现,在CDBDMBS / Nafion / GCE和PBDMBS / Nafion / GCE之间的比较研究后,CDBDMBS对镓阳离子的亲和力良好。镓是我们生态系统中的各种重金属阳离子之一,作为环境污染物。发现CDBDMBS / NAFION / GCE的分析性能在灵敏度,稳定性,线性动态范围和朝向GA3 +离子的改善的电化学性能方面非常有趣。除了敏感度,检测极限(在3)的敏感度外,校准图是在Ga3 +离子的大浓度范围内的线性(R(2)= 0.9006),除了灵敏度,检测极限(在3)的限制和定量的限制之外,校准曲线(1.0nm至0.01 m)。发现为3.955×10(-3)m-1 cm(-2),0.02nm和0.08nm。这种新颖的方法介绍了一种新的和良好的组织系统,用于在大规模的环境和医疗保健领域的有毒阳离子电化学开发有效传感器。因此,这种新设计的CDBDMBS / NAFION / GCE呈现出一种成本效率的化合物,可以用作有效地从水样中检测和除去GA(3+)离子的可行性替代品。

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