Department of Chemistry, Faculty of Science, Mahasarakham University, Maha Sarakham, 44150, Thailand.
Research Laboratory for Analytical Instrument and Electrochemistry Innovation, Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai, 50200, Thailand.
Analyst. 2022 May 17;147(10):2170-2179. doi: 10.1039/d2an00346e.
A portable paper-based electrochemical sensor has been developed to determine 5-hydroxymethylfurfural (5-HMF). A screen-printed carbon electrode (SPCE) was facilely fabricated for the first time on poster paper which showed a very satisfactory electrochemical response. The analytical performance of the electrode was enhanced by electrochemical deposition of silver microdendrites (AgMDs). The cathodic peak of 5-HMF occurred at approximately -1.48 V, lower than that obtained from the bare poster-SPCE. Moreover, the modified electrode showed a higher current response than the bare electrode, revealing that the AgMDs not only exhibited highlighted electrocatalytic features but also improved the electrical conductivity and increased the electrode surface area. Afterward, some influencing conditions were optimized, including scan rate and the number of scan cycles for AgMD deposition, pH, temperature, and square wave voltammetric parameters. Under the optimal conditions, the analytical characteristics of the proposed sensor were evaluated. The cathodic peak current increased linearly according to 5-HMF concentration over the range of 3-100 ppm, and the detection limit was 1.0 ppm. This low-cost, disposable electrochemical sensor provided environmentally friendly, simple and rapid detection, acceptable precision, good stability, and high selectivity. Additionally, this method can be applied to quantify 5-HMF in honey samples with satisfying accuracy.
一种便携式纸基电化学传感器已被开发用于测定 5-羟甲基糠醛(5-HMF)。首次在海报纸上简便地制造了丝网印刷碳电极(SPCE),其显示出非常令人满意的电化学响应。通过电化学沉积银微枝晶(AgMDs)增强了电极的分析性能。5-HMF 的阴极峰出现在约-1.48 V,低于从裸海报-SPCE 获得的值。此外,修饰后的电极比裸电极显示出更高的电流响应,表明 AgMDs 不仅表现出突出的电催化特性,而且提高了电导率并增加了电极表面积。随后,优化了一些影响条件,包括 AgMD 沉积的扫描速率和扫描循环次数、pH 值、温度和方波伏安参数。在最佳条件下,评估了所提出传感器的分析特性。阴极峰电流根据 5-HMF 浓度在 3-100 ppm 范围内呈线性增加,检测限为 1.0 ppm。这种低成本、一次性的电化学传感器提供了环保、简单和快速的检测,具有可接受的精度、良好的稳定性和高选择性。此外,该方法可用于定量蜂蜜样品中的 5-HMF,结果令人满意。