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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Conformational changes in self-assembled monolayers of 4-pyridineethanethiol and 2-aminoethanethiol on the gold nanoparticle-graphene oxide composite and advantages in Hg(II) determination
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Conformational changes in self-assembled monolayers of 4-pyridineethanethiol and 2-aminoethanethiol on the gold nanoparticle-graphene oxide composite and advantages in Hg(II) determination

机译:4-吡啶硫醇和2-氨基乙醇在金纳米粒子 - 石墨烯氧化物复合材料上的自组装单层和2-氨基乙醇的构象变化及HG(II)测定中的优点

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摘要

In this study, the advance in modification of glassy carbon electrode (GCE) has been further developed for enhancing advantages in Hg(II) determination by differential pulse voltammetry. A composite of gold nanoparticles (AuNPs) and graphene oxide (GO) was first produced under the reduced potential of Au(III). The composite was then modified with self-assembled monolayer (SAMs) of 4-pyridineethanethiol (PET), which followed by an introduction of 2-aminoethanethiol (AET). Properties of the synthesized AuNPs and the modified SAMs were characterized using scanning electron microscopy (SEM), transmission electron microscopy (TEM), cyclic voltammetry (CV), and infrared reflection absorption spectroscopy. The results indicated that the presence of GO did not only increase the active surface area, but also involved in the intermolecular interactions. The latter property which is similar to the role of AET led to reduction of the highly ordered state of alkyl chains and conformations of terminated groups in alkanethiolates. This postulation was in good agreement with the interaction energy calculated by density functional theory (DFT). The influence of various parameters on the voltammetric response of Hg(II) was also investigated. Under the optimized conditions, the modified GCE offered higher sensitivity in the Hg(II) determination. The linear correspondence of the peak current response to the concentration of Hg(II) was from 0.149 to 17.421nM with a correlation coefficient of 0.999, and with the detection limit of 0.012nM (signal/noise = 3). The modified GCE was also employed to determine Hg(II) in sampled water collected in different local areas, which showed satisfactory results.
机译:在该研究中,进一步开发了玻碳电极(GCE)改性的前进进一步开发用于通过差分脉冲伏安法提高HG(II)测定中的优点。首先在Au(III)的潜力降低的潜力下制备金纳米颗粒(AUNP)和石墨烯(GO)的复合物。然后用4-吡啶乙醇(PET)的自组装单层(SAMS)改性复合材料,然后引入2-氨基乙醇(AET)。使用扫描电子显微镜(SEM),透射电子显微镜(TEM),循环伏安法(CV)和红外反射吸收光谱,表征合成的AUNP和改性SAM的性质。结果表明,去的存在不仅增加了活性表面积,而且还包括分子间相互作用。后一种物质与AET的作用类似导致降低烷基链的高度有序状态和链烷醇烯醇酯中终止基团的构象。这种假设与密度泛函理论(DFT)计算的相互作用能量吻合良好。还研究了各种参数对HG(II)伏安响应的影响。在优化条件下,改性的GCE在HG(II)的测定中提供了更高的灵敏度。峰值电流响应对Hg(II)浓度的线性对应率为0.149至17.421nm,其相关系数为0.999,并且检测限为0.012nm(信号/噪声= 3)。改性的GCE还用于确定在不同局部区域收集的采样水中的Hg(II),其显示出令人满意的结果。

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