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首页> 外文期刊>Food Chemistry >Electrochemical determination with a long-length carbon nanotube electrode of quercetin glucosides in onion, apple peel, and tartary buckwheat
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Electrochemical determination with a long-length carbon nanotube electrode of quercetin glucosides in onion, apple peel, and tartary buckwheat

机译:用长碳纳米管电极对洋葱,苹果皮和苦荞中的槲皮素糖苷进行电化学测定

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摘要

Since the intake of quercetin glucosides has healthy benefits, the analysis of quercetin glucosides in food is useful. The electrochemical determination of individual quercetin glucosides (quercetin-3-glucoside (Q3G), quercetin-4'-glucoside (Q4'G), and quercetin-3,4'-diglucoside (Q34'G)) in food is carried out. For the detection of quercetin glucosides, a long-length carbon nanotube electrode offers attractive properties such as well-defined current peaks, high sensitivity, and high reproducibility. Cyclic voltammetry (CV) demonstrates distinct and specific peak currents: the oxidation peaks at +0.37, +0.45, and +0.78 V are assigned to the catechol group in the B-ring of Q3G, the 3-hydroxy group in the C-ring of Q4'G, and the resorcinol group in the A-ring of both Q4'G and Q34'G, respectively. Currents, which are determined by CV, of individual quercetin glucosides at the peak potential are proportional to the concentrations of onion, apple peel, and tartary buckwheat, which show good agreement with those obtained by high-performance liquid chromatography.
机译:由于摄入槲皮素葡糖苷具有健康益处,因此分析食品中的槲皮素葡糖苷是有用的。对食品中的槲皮素葡萄糖苷(槲皮素-3-葡萄糖苷(Q3G),槲皮素-4'-葡萄糖苷(Q4'G)和槲皮素-3,4'-二葡萄糖苷(Q34'G)进行电化学测定。对于槲皮素葡萄糖苷的检测,长碳纳米管电极具有吸引人的特性,例如明确的电流峰,高灵敏度和高再现性。循环伏安法(CV)表现出不同且特定的峰值电流:在+ 0.37,+ 0.45和+0.78 V处的氧化峰被分配给Q3G B环中的儿茶酚基团,C环中的3-羟基基团分别是Q4'G和Q34'G的A环中的间苯二酚基团。单个槲皮素葡糖苷在峰值电位下的CV电流与洋葱,苹果皮和苦荞麦的浓度成正比,这与通过高效液相色谱法获得的电流具有很好的一致性。

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