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Self-organized gold nanoparticles modified HOPG electrodes: Electrochemical stability and its use for electrochemical nanosensing applications

机译:自组织金纳米颗粒修饰的HOPG电极:电化学稳定性及其在电化学纳米传感应用中的用途

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The presented work shows the development of a performing electrochemical sensor using self-organized gold nanoparticle (Au NP) modified HOPG electrode. Au NPs were functionalized with bisphosphonate-thiol receptors (BP-thiol) whose interactions with Au NP surface were investigated by XPS and FTIR-ATR experiments. It has been shown that the electrochemical stability of modified electrodes increases at potentials higher than-1.3 eV corresponding to the thiol reduction potential. In order to demonstrate the sensing performance of the prepared electrode the electrochemical analysis of copper and silver metal ions was achieved by using square wave voltammetry (SWV). The obtained results show a remarkable performance increase in terms of: the simple fabrication, simple use, and linear behavior over the concentration range from 5 mu M to 0.5 mM, with the detection limit of 5 M. (C) 2017 Elsevier B.V. All rights reserved.
机译:提出的工作显示了使用自组织金纳米颗粒(Au NP)修饰的HOPG电极开发的性能电化学传感器的发展。 Au NPs被双膦酸酯硫醇受体(BP-thiol)官能化,其与Au NP表面的相互作用通过XPS和FTIR-ATR实验研究。已经表明,修饰电极的电化学稳定性在高于-1.3eV的对应于硫醇还原电位的电位下增加。为了证明所制备电极的感测性能,使用方波伏安法(SWV)对铜和银金属离子进行了电化学分析。获得的结果在以下方面表现出显着的性能提升:在5μM至0.5 mM的浓度范围内,简单的制造,简单的使用和线性行为,检测极限为5 M.(C)2017 Elsevier BV版权所有保留。

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