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用于区分复杂分析物的成对脉冲伏安法。

Paired pulse voltammetry for differentiating complex analytes.

机构信息

Department of Neurologic Surgery, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Analyst. 2012 Mar 21;137(6):1428-35. doi: 10.1039/c2an15912k. Epub 2012 Feb 2.

Abstract

Although fast-scan cyclic voltammetry (FSCV) has contributed to important advances in neuroscience research, the technique is encumbered by significant analytical challenges. Confounding factors such as pH change and transient effects at the microelectrode surface make it difficult to discern the analytes represented by complex voltammograms. Here we introduce paired-pulse voltammetry (PPV), that mitigates the confounding factors and simplifies the analytical task. PPV consists of a selected binary waveform with a specific time gap between each of its two comprising pulses, such that each binary wave is repeated, while holding the electrode at a negative potential between the waves. This allows two simultaneous yet very different voltammograms (primary and secondary) to be obtained, each corresponding to the two pulses in the binary waveform. PPV was evaluated in the flow cell to characterize three different analytes, (dopamine, adenosine, and pH changes). The peak oxidation current decreased by approximately 50%, 80%, and 4% for dopamine, adenosine, and pH, in the secondary voltammogram compared with the primary voltammogram, respectively. Thus, the influence of pH changes could be virtually eliminated using the difference between the primary and secondary voltammograms in the PPV technique, which discriminates analytes on the basis of their adsorption characteristics to the carbon fiber electrode. These results demonstrate that PPV can be effectively used for differentiating complex analytes.

摘要

尽管快速扫描循环伏安法(FSCV)为神经科学研究做出了重要贡献,但该技术仍存在重大分析挑战。pH 值变化和微电极表面的瞬态效应等干扰因素使得复杂的伏安图很难辨别分析物。在这里,我们引入了双脉冲伏安法(PPV),它可以减轻干扰因素并简化分析任务。PPV 由一个选定的二进制波形组成,每个脉冲之间有一个特定的时间间隔,使得每个二进制波重复,同时在两个波之间将电极保持在负电位。这允许获得两个同时但非常不同的伏安图(初级和次级),每个伏安图对应于二进制波形中的两个脉冲。我们在流动池中评估了 PPV 以表征三种不同的分析物(多巴胺、腺苷和 pH 值变化)。与初级伏安图相比,次级伏安图中多巴胺、腺苷和 pH 值的氧化峰电流分别降低了约 50%、80%和 4%。因此,使用 PPV 技术中初级和次级伏安图之间的差值可以几乎消除 pH 值变化的影响,该技术基于分析物对碳纤维电极的吸附特性来区分分析物。这些结果表明,PPV 可有效用于区分复杂的分析物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45ae/3349343/db4569f2aeef/nihms372898f1.jpg

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