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GABA Detection with Nano-ITIES Pipet Electrode: A New Mechanism, Water/DCE–Octanoic Acid Interface

机译:GABA检测用纳米型管道管电极:一种新机制,水/ DCE-辛酸界面

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摘要

Interface between two immiscible electrolyte solutions (ITIES) supported on the orifice of a pipet have become a powerful platform to detect a broad range of analytes. We present here the detection of γ-aminobutyric acid (GABA) with the nanoITIES pipet electrodes for the first time. GABA has a net charge of zero in an aqueous solution at pH ≈ 7, and it has not previously been detected at ITIES. In this work, we demonstrated GABA detection at ITIES in an aqueous solution at pH ≈ 7, where we introduced a novel detection strategy based on “pH modulation from the oil phase”. To the best of our knowledge, this is the first report of such. Current increases linearly with increasing concentrations of GABA, ranging from 0.25 mM to 1.0 mM. The measured half-wave transfer potential of GABA is ?0.401 ± 0.010 V ( n = 22) vs E _(1/2,TBA). The measured diffusion coefficient for GABA detection at nanoITIES pipet electrode is 6.09 (±0.58) × 10~(–10) m~(2)/s ( n = 5). Experimental results indicate that protons generated from octanoic acid dissociation in the oil phase do not come out from the oil phase into the aqueous phase; neither were protons produced in the aqueous phase. NanoITIES pipet electrodes with radii of 320–340 nm were used in the current study. This new strategy and knowledge presented here lays the groundwork for the future development of ITIES pipet electrodes, especially for the detection of electrochemically nonredox active analytes.
机译:两个不混溶的电解质解决方案(ITIES)之间的界面在吸管器的孔口上支撑,已成为检测广泛的分析物的强大平台。我们在此介绍一种在此检测γ-氨基丁酸(GABA)与纳米脱乙酸电极首次检测。 GABA在pH≈7的水溶液中在水溶液中具有净电荷为零,并且先前没有以术语检测到。在这项工作中,我们证明了在pH≈7的水溶液中的GABA检测,在那里我们在其中引入了基于“来自油相的pH调节”的新型检测策略。据我们所知,这是第一个报告。电流随着GABA的浓度增加而线性增加,范围为0.25mm至1.0mm。 GABA的测量的半波转移电位是α0.401±0.010V(n = 22)Vs e _(1/2,TBA)。在纳米移液电极下的GABA检测的测量扩散系数为6.09(±0.58)×10〜(-10)m〜(2)/ s(n = 5)。实验结果表明,从油相中辛酸解离产生的质子不会从油相中进入水相;既不在水相中产生质子。目前研究中使用纳米管电极320-340nm。本文提出的这种新的战略和知识在此奠定了未来发展的基础,尤其是用于检测电化学非REDOX活性分析物。

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  • 来源
    《Analytical chemistry》 |2018年第5期|共6页
  • 作者单位

    Department of Chemistry University of Illinois at Urbana?Champaign 600 South Mathews Avenue Urbana Illinois 61801 United States;

    Department of Chemistry University of Illinois at Urbana?Champaign 600 South Mathews Avenue Urbana Illinois 61801 United States;

    Department of Chemistry University of Illinois at Urbana?Champaign 600 South Mathews Avenue Urbana Illinois 61801 United States;

    Department of Chemistry University of Illinois at Urbana?Champaign 600 South Mathews Avenue Urbana Illinois 61801 United States;

    Department of Chemistry University of Illinois at Urbana?Champaign 600 South Mathews Avenue Urbana Illinois 61801 United States;

    Department of Chemistry University of Illinois at Urbana?Champaign 600 South Mathews Avenue Urbana Illinois 61801 United States;

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  • 正文语种 eng
  • 中图分类 分析化学;
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