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Study of a novel fabrication method of 3D Ag-based nanoporous structures for electrochemical detection

机译:用于电化学检测三维AG基纳米多孔结构的新型制造方法研究

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In this paper, a novel two-step facile strategy was first proposed to fabricate nanoporous Ag (NP-Ag) and nanoporous Ag/AgCl (NP-Ag/AgCl) materials to simplify manufacturing procedure, shorten processing time, and optimize experiment condition. Co-electrodeposition of AgSn alloy on the interdigital gold electrode (IGE) and subsequent electrochemical dealloying in HCl solution by applying different potentials. The surface morphologies as well as the electrochemical characterizations of the fabricated NP-Ag and NP-Ag/AgCl IGEs were investigated. The fabricated NP-Ag IGEs were evaluated as biomolecules simultaneous electrochemical sensors for determination of acetaminophen (AC) and dopamine (DA). In addition, the performance of the fabricated NP-Ag/AgCl IGEs, as micro-size reference electrodes, were studied. The NP-Ag electrodes were found promising linear current response to AC (correlation coefficient, R2 = 0.9906) and DA (correlation coefficient, R2 = 0.9961), under the concentration ranges from 0.5 to 290 mu M and 0.25 to 500 mu M, respectively. Moreover, the fabricated NP-Ag/AgCl IGEs were possessed of enhanced stability and miniature size as pseudo-reference electrodes (p-REs) in contrast with commercial p-REs, which benefiting from abundant ion-exchange sites and quantities of nanochannels on the sponge-like surface. Results demonstrated the innovative surface modification of as-synthesized NP-Ag and NP-Ag/AgCl have positive implication for massive production of nanoporous Ag-based materials and the utilization of prospective point-of-care testing.
机译:本文首次提出了一种两步制备纳米多孔Ag(NP-Ag)和纳米多孔Ag/AgCl(NP-Ag/AgCl)材料的新方法,以简化制备过程,缩短加工时间,优化实验条件。在叉指金电极上共沉积AgSn合金,然后在盐酸溶液中通过施加不同的电位进行电化学脱合金。研究了所制备的NP-Ag和NP-Ag/AgCl-IGEs的表面形貌和电化学表征。所制备的NP-Ag IgE被评估为用于测定对乙酰氨基酚(AC)和多巴胺(DA)的生物分子同步电化学传感器。此外,还研究了所制备的NP-Ag/AgCl-IGEs作为微尺寸参比电极的性能。在浓度范围分别为0.5至290μM和0.25至500μM的情况下,发现NP-Ag电极对AC(相关系数R2=0.9906)和DA(相关系数R2=0.9961)具有良好的线性电流响应。此外,与商业p-REs相比,所制备的NP-Ag/AgCl-IGEs作为伪参比电极(p-REs)具有更高的稳定性和更小的尺寸,这得益于海绵状表面上丰富的离子交换位点和大量的纳米通道。结果表明,对合成的NP-Ag和NP-Ag/AgCl进行创新性的表面改性,对于大规模生产纳米多孔银基材料和利用前瞻性护理点测试具有积极意义。

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