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首页> 外文期刊>Bulletin of the Chemical Society of Japan >Surface Structures and Electrochemical Activity of Palladium-Niobium Binary Alloy Electrodes, and Glucose Biosensor with Palladium-Niobium Binary Alloy Electrode
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Surface Structures and Electrochemical Activity of Palladium-Niobium Binary Alloy Electrodes, and Glucose Biosensor with Palladium-Niobium Binary Alloy Electrode

机译:钯 - 铌二元合金电极的表面结构和电化学活性,磷酸铌二元合金电极葡萄糖生物传感器

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The electrochemical activities of binary metals in a Pd-Nb system were investigated as a function of their compositions, crystal structures, using a hydrogen peroxide and ascorbic acid redox reaction. High activities for the redox reaction of hydrogen peroxide were observed when an alloy of composition 75 atom% Pd-25 atom % Nb (Pd-25Nb) with Pd3Nb phase was used. Tests on six electrodes showed that at a constant potential of 0.7 V, the Pd-25Nb electrode had the best hydrogen peroxide detection capability (Pd-25Nb: 3.2 mu A mm-2; Pd: 2.4 pA mm-2; Pt: 2.2 mu A mm(-2); Pd-10Nb: 1.8 mu A mm(-2); Pd-30.8Nb: 2.4 mu A mm(-2); Pd-54.4Nb: 0.6 mu A mm(-2) for 2 mM hydrogen peroxide). And then, Pd-25Nb gave the best performance in terms of preferential hydrogen peroxide oxidation against ascorbic acid. Subsequently, the Pd-25Nb electrode which had excellent hydrogen peroxide detection capability, Pd and Pt were used for the fabrication of amperometric glucose sensors. To fabricate the glucose sensors, we coated the three electrodes first with y-aminopropyltriethoxysilane, and then with crosslinked bovine serum albumin and glutaraldehyde containing glucose mddase. Tests on the Pd-25Nb, Pd, and Pt electrode glucose sensors showed that the Pd-25Nb glucose sensor had a better glucose detection capability than the Pd and Pt glucose sensors: 0.468 mu A mm-2 mM(-1) for the Pd-25Nb sensor, 0.307 pAmm-2mM-1 for the Pd sensor, and 0.276tAmm2niM -1 for the Pt sensor with 1.67 mM glucose. We discuss the relation between electrode responses to both hydrogen peroxide and ascorbic acid and electrode surface structures.
机译:使用过氧化氢和抗坏血酸氧化还原反应,研究了PD-NB系统中二元金属在PD-NB系统中的电化学活性。当组合物75原子%PD-25原子%NB(PD-25NB)与PD3NB相的合金的合金时,观察到过氧化氢氧化还原反应的高活性。六个电极的测试显示,在0.7V的恒定电位下,PD-25NB电极具有最佳的过氧化氢检测能力(PD-25NB:3.2μmm-2; PD:2.4Pa mm-2; Pt:2.2μm一个mm(-2); pd-10nb:1.8 mm a mm(-2); pd-30.8b:2.4 mm a mm(-2); pd-54.4nb:0.6 mm a mm(-2)2 mm过氧化氢)。然后,PD-25NB就抗坏血酸的优先过氧化氢氧化而获得了最佳性能。随后,具有优异的过氧化氢检测能力,Pd和Pt的PD-25NB电极用于制造电流葡萄糖传感器。为了制造葡萄糖传感器,首先用Y-氨基丙基三乙氧基硅烷涂覆三个电极,然后用交联牛血清白蛋白和含有葡萄糖MDDS的戊二醛。 PD-25NB,PD和PT电极血糖传感器的测试表明,PD-25NB葡萄糖传感器具有比Pd和Pt葡萄糖传感器更好的葡萄糖检测能力:PD为0.468 mm-2 mm(-1) -25NB传感器,PD传感器为0.307 PAMM-2MM-1,PT传感器为0.276Tamm2NIM -1,具有1.67mm葡萄糖。我们讨论了对过氧化氢和抗坏血酸和电极表面结构的电极响应之间的关系。

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