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采用 3D 打印石墨烯/聚乳酸电极对未掺杂食品、尿液和血清进行伏安法 pH 测量。

Voltammetric pH Measurements in Unadulterated Foodstuffs, Urine, and Serum with 3D-Printed Graphene/Poly(Lactic Acid) Electrodes.

机构信息

Department of Chemistry and Biochemistry, Montclair State University, Montclair, New Jersey 07043, United States.

出版信息

Anal Chem. 2020 Nov 17;92(22):14999-15006. doi: 10.1021/acs.analchem.0c02902. Epub 2020 Nov 3.

Abstract

The pH of a system is a critical descriptor of its chemistry-impacting reaction rates, solubility, chemical speciation, and homeostasis. As a result, pH is one of the most commonly measured parameters in food safety, clinical, and environmental laboratories. Glass pH probes are the gold standard for pH measurements but suffer drawbacks including frequent recalibration, wet storage of the glass membrane, difficulty in miniaturization, and interferences from alkali metals. In this work, we describe a voltammetric pH sensor that uses a three-dimensional (3D)-printed graphene/poly(lactic acid) filament electrode that is pretreated to introduce quinone functional groups to the graphene surface. After thoroughly characterizing the pretreatment parameters using outer-sphere and inner-sphere redox couples, we measured pH by reducing the surface-bound quinones, which undergo a pH-dependent 2e/2H reduction. The position of the redox peak was found to shift -60 ± 2 mV pH at 25 °C, which is in excellent agreement with the theoretical value predicted by the Nernst Equation (-59.2 mV pH). Importantly, the sensors did not require the removal of dissolved oxygen prior to successful pH measurements. We investigated the impact of common interfering species (Pb and Cu) and found that there was no impact on the measured pH. We subsequently challenged the sensors to measure the pH of unadulterated complex samples, including cola, vinegar, an antacid tablet slurry, serum, and urine, and obtained excellent agreement compared to a glass pH electrode. In addition to the positive analytical characteristics, the sensors are extremely cheap and easy to fabricate, making them highly accessible to a wide range of researchers. These results pave the way for customizable pH sensors that can be fabricated in (nearly) any geometry for targeted applications using 3D printing.

摘要

系统的 pH 值是其化学性质的关键描述符,影响反应速率、溶解度、化学形态和动态平衡。因此,pH 值是食品安全、临床和环境实验室中最常测量的参数之一。玻璃 pH 探头是 pH 值测量的金标准,但存在频繁需要重新校准、玻璃膜湿存储、微型化困难以及碱金属干扰等缺点。在这项工作中,我们描述了一种使用三维(3D)打印石墨烯/聚乳酸灯丝电极的伏安 pH 传感器,该电极经过预处理,在石墨烯表面引入醌官能团。在使用外球和内球氧化还原对彻底表征预处理参数后,我们通过还原表面结合的醌来测量 pH 值,醌经历与 pH 值相关的 2e/2H 还原。在 25°C 下,发现氧化还原峰的位置向 pH 值偏移了-60±2 mV,这与 Nernst 方程预测的理论值(-59.2 mV pH)非常吻合。重要的是,传感器在成功进行 pH 值测量之前不需要去除溶解氧。我们研究了常见干扰物质(Pb 和 Cu)的影响,发现它们对测量的 pH 值没有影响。随后,我们用这些传感器测量了未被污染的复杂样品的 pH 值,包括可乐、醋、抗酸片浆、血清和尿液,并与玻璃 pH 电极相比获得了极好的一致性。除了具有积极的分析特性外,这些传感器的制造成本非常低廉且易于制造,因此可以广泛应用于各种研究人员。这些结果为使用 3D 打印制造针对特定应用的几乎任何几何形状的可定制 pH 传感器铺平了道路。

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