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Highly sensitive electrochemical detection of methyl salicylate using electroactive gold nanoparticles

机译:使用电活性金纳米粒子高灵敏的电化学检测水杨酸甲酯

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摘要

Electrochemical sensing of methyl salicylate, a key plant volatile has been achieved using a gold nanoparticle (AuNP) modified screen printed carbon electrode (SPCE). The electrochemical response of planar gold electrodes, SPCE and AuNP-SPCE in alkaline electrolyte in the presence and absence of methyl salicylate were studied to understand the amperometric response of various electrochemical reactions. The reaction mechanism includes hydrolysis of methyl salicylate and the oxidation of negative species. The electrochemical responses were recorded using cyclic voltammetry and differential pulse voltammetry techniques, where the results showed characteristic signals for methyl salicylate oxidation. Among the examined electrodes, AuNP-SPCE possessed three fold better sensitivity than planar gold and 35 times better sensitivity than SPCE (at 0.5 V). The methyl salicylate sensing by AuNP-SPCE possessed <5% variation coefficient for repeatability, one week of stable performance with no more than 15% activity loss even if used multiple times (n = 8). Even in the presence of high concentration of interfering compounds such as cis-3-hexenol, hexyl acetate and cis-hexenyl acetate, AuNP-SPCE retained >95% of its methyl salicylate response. The electroanalytical results of soybean extract showed that AuNP-SPCE can be employed for the determination of methyl salicylate in real samples.
机译:使用金纳米粒子(AuNP)修饰的丝网印刷碳电极(SPCE)已实现了对水杨酸甲酯(一种重要的植物挥发物)的电化学检测。研究了存在和不存在水杨酸甲酯的情况下,平面金电极,SPCE和AuNP-SPCE在碱性电解液中的电化学响应,以了解各种电化学反应的安培响应。反应机理包括水杨酸甲酯的水解和负离子的氧化。使用循环伏安法和差分脉冲伏安法技术记录电化学反应,结果显示了水杨酸甲酯氧化的特征信号。在所检查的电极中,AuNP-SPCE的灵敏度是平面金的三倍,灵敏度是SPCE(0.5 V)的35倍。 AuNP-SPCE感测的水杨酸甲酯的重复性变异系数小于5%,即使经过多次使用(n = 8),一周的稳定性能仍不超过15%的活性损失。即使在高浓度的干扰化合物(如顺式-3-己烯醇,乙酸己酯和顺式己烯基乙酸酯)存在下,AuNP-SPCE仍保留了其水杨酸甲酯响应的95%以上。大豆提取物的电分析结果表明,AuNP-SPCE可用于测定实际样品中的水杨酸甲酯。

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