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A non-enzymatic nanoceria electrode for non-invasive glucose monitoring

机译:用于非侵入性葡萄糖监测的非酶纳米氧化铈电极

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Nanoceria (CeO2) is a special rare earth material, which has electron transfer and catalytic ability. In this paper, an electrochemical method is used to combine CeO2 and gold nanoparticles (AuNPs) on a glassy carbon electrode. It is shown that this combination can construct a catalyst–electron transfer system. The synergistic effect between CeO2 and AuNPs can enable the system to mimic the enzyme–electron transfer function of glucose oxidase and increase the electron transfer rate, which can significantly increase the sensitivity and hence measure the glucose concentration through an electrochemical method. The system demonstrates a high sensitivity of 1071.52 μA mM?1 cm?2, and a detection limit of 2.86 × 10?3 mM (S/N = 3) across a linear range of 0.02–0.6 mM. Moreover, with a relatively low electrochemical surface area (ESA), the sensor demonstrates good stability, reproducibility, and anti-interference performance toward ascorbic acid (AA), uric acid (UA), and NaCl. The electrode therefore may be used to monitor the glucose level in human fluids, such as saliva and tears.
机译:纳米氧化铈(CeO2)是一种特殊的稀土材料,具有电子转移和催化能力。在本文中,采用电化学方法将CeO2和金纳米颗粒(AuNPs)结合在玻璃碳电极上。结果表明,这种结合可以构建催化剂-电子转移系统。 CeO2和AuNPs之间的协同作用可使系统模拟葡萄糖氧化酶的酶-电子转移功能并提高电子转移速率,这可以显着提高灵敏度,因此可以通过电化学方法测量葡萄糖浓度。该系统在0.02–0.6 mM的线性范围内显示出1071.52μAmM?1 cm?2的高灵敏度和2.86×10?3 mM(S / N = 3)的检测极限。此外,该传感器具有相对较低的电化学表面积(ESA),对抗坏血酸(AA),尿酸(UA)和NaCl具有良好的稳定性,可重复性和抗干扰性能。因此,该电极可用于监测人体液体(如唾液和眼泪)中的葡萄糖水平。

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