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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Non-enzymatic sensing of glucose and hydrogen peroxide using a glassy carbon electrode modified with a nanocomposite consisting of nanoporous copper, carbon black and nafion
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Non-enzymatic sensing of glucose and hydrogen peroxide using a glassy carbon electrode modified with a nanocomposite consisting of nanoporous copper, carbon black and nafion

机译:使用玻碳电极修饰葡萄糖和过氧化氢进行非酶感测,玻电极修饰有纳米复合物,该复合物由纳米孔铜,炭黑和nafion组成

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摘要

Three-dimensional nanoporous copper (NPC) was fabricated by dealloying ribbons of an Al-Cu alloy. NPC possesses a clean metal surface and high electrical conductivity. Subsequently, a non-enzymatic electrochemical sensor was obtained by modifying a glassy carbon electrode with nanocomposites containing nanoporous copper and carbon black (NPC-CB) in a nafion matrix. The sensor, if operated at a working voltage of 0.6 V (vs. SCE) in 50 mM NaOH solution, has a linear analytical range that extends from 6.0 mu M to 3.4 mM of glucose, and a 2.6 mu M detection limit (at an S/N ratio of 3). It also shows good selectivity over ascorbic acid, uric acid, dopamine and carbohydrates (fructose, saccharose, and maltose). The sensor also has a rapid amperometric response to hydrogen peroxide which can be quantified with a 1.2 mu M detection limit.
机译:三维纳米孔铜(NPC)是通过脱合金铝铜合金的带材制成的。 NPC具有清洁的金属表面和高导电性。随后,通过使用在nafion基质中包含纳米孔铜和炭黑(NPC-CB)的纳米复合材料修饰玻璃碳电极,获得了非酶电化学传感器。如果在50 mM NaOH溶液中以0.6 V(vs. SCE)的工作电压运行,该传感器的线性分析范围可以从6.0μM扩展到3.4 mM葡萄糖,并且检测限为2.6μM(在信噪比为3)。它也显示出对抗坏血酸,尿酸,多巴胺和碳水化合物(果糖,蔗糖和麦芽糖)的良好选择性。该传感器还具有对过氧化氢的快速安培响应,可以用1.2μM的检测极限进行定量。

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