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CATHODIZED GOLD NANOPARTICLE GRAPHITE PENCIL ELECTRODE AND METHOD FOR GLUCOSE DETECTION

机译:阳离子化金纳米颗粒石墨电极及葡萄糖检测方法

摘要

The cathodized gold nanoparticle graphite pencil electrode is a sensitive enzymeless electrochemical glucose sensor based on the cathodization of AuNP-GPE. Cyclic voltammetry shows that advantageously, the cathodized AuNP-GPE is able to oxidize glucose partially at low potential (around −0.27 V). Fructose and sucrose cannot be oxidized at 0.1 V, thus the glucose oxidation peak at around −0.27 V is suitable enough for selective detection of glucose in the presence of fructose and sucrose. However, the glucose oxidation peak current at around −0.27 V is much lower which should be enhanced to obtain low detection limit. The AuNP-GPE cathodization increases the oxidation peak current of glucose at around −0.27 V. The dynamic range of the sensor is in the range between 0.05 to 5.0 mM of glucose with good linearity (R2=0.999). Almost no interference effect was observed for sensing of glucose in the presence of fructose, sucrose and NaCl.
机译:阴极金纳米粒子石墨笔电极是基于AuNP-GPE阴极化的灵敏的无酶电化学葡萄糖传感器。循环伏安法表明,有利地,阴极化的AuNP-GPE能够在低电势(约-0.27 V)下部分氧化葡萄糖。果糖和蔗糖不能在<0.1 V时被氧化,因此在-0.27 V附近的葡萄糖氧化峰足以在果糖和蔗糖存在下选择性检测葡萄糖。但是,在-0.27 V附近的葡萄糖氧化峰值电流要低得多,应该增强以获得较低的检测限。 AuNP-GPE阴极化可在-0.27 V附近增加葡萄糖的氧化峰值电流。传感器的动态范围在0.05至5.0 mM的葡萄糖之间,具有良好的线性(R 2 = 0.999) )。在果糖,蔗糖和氯化钠存在下,几乎没有观察到干扰感测葡萄糖。

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