首页> 外文期刊>Journal of new materials for electrochemical systems >Effects of Introducing 2-aminoethanethiol into 4-pyridineethanethiol Self-assembled Monolayer Applicable to Enhance Sensitivity of Hg(II) Electrochemical Analysis
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Effects of Introducing 2-aminoethanethiol into 4-pyridineethanethiol Self-assembled Monolayer Applicable to Enhance Sensitivity of Hg(II) Electrochemical Analysis

机译:将4-氨基乙硫醇自组装单层引入2-氨基乙硫醇对提高汞(II)电化学分析灵敏度的影响

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摘要

In our work, enhancement of sensitivity of Hg(II) determination by introducing 2-aminoethanethiol (AET) from solutions into the self-assembled monolayers (SAMs) of 4-pyridineethanethiol (PET) on gold nanoparticles (Au-NPs) capped on glassy carbon electrode was studied. The formation of binary SAMs was indicated by the shift of reductive desorption peak to negative potentials in voltammograms recorded in 0.5 M KOH solution. Effects of introduction AET were monitored by FTIR that there was a rapid increase of intensities at bands of 1296 and 1189 cm(-1) ascribed to (C-H) (ring), deformation and (C-N) (ring) stretching, respectively, with increasing immersion time. However, these bands became lower with prolonging more time as well as increasing the concentration of AET in solution. These effects were interpreted due to the conformation of pyridine ring and formation of intermolecular hydrogen bonding between PET and AET. The dfferential pulse voltammetry for reoxidation of Hg(0) showed the increase of peak current induced by the first effect, whereas the later caused the decrease. Since the optimized conditions, the detection limit for the binary SAMs could approach to 3.85 x 10(-12) M Hg(II), approximately three times lower than that of PET SAM.
机译:在我们的工作中,通过将溶液中的2-氨基乙硫醇(AET)引入到盖在玻璃状玻璃上的金纳米颗粒(Au-NPs)上的4-吡啶乙硫醇(PET)的自组装单分子膜(SAM)中,提高了Hg(II)测定的灵敏度。研究了碳电极。在0.5 M KOH溶液中记录的伏安图中,还原性解吸峰向负电势的迁移表明了二元SAM的形成。 FTIR监测了引入AET的影响,分别随着(CH)(环),形变和(CN)(环)拉伸而在1296和1189 cm(-1)带处的强度迅速增加,浸泡时间。但是,这些带随着时间的延长以及溶液中AET浓度的增加而降低。解释这些作用是由于吡啶环的构象以及PET和AET之间分子间氢键的形成。 Hg(0)再氧化的差动脉冲伏安法显示,由第一个效应引起的峰值电流增加,而由后者引起的峰值电流则减小。由于优化的条件,二元SAM的检出限可能达到3.85 x 10(-12)M Hg(II),比PET SAM低三倍。

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