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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >An amperometric enzyme electrode and its biothel cell based on a glucose oxidase-poly(3-anilineboronic acid)-Pd nanoparticles bionanocomposite for glucose biosensing
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An amperometric enzyme electrode and its biothel cell based on a glucose oxidase-poly(3-anilineboronic acid)-Pd nanoparticles bionanocomposite for glucose biosensing

机译:基于葡萄糖氧化酶-聚(3-苯胺硼酸)-Pd纳米粒子的生物纳米复合材料的安培酶电极及其生物干细胞,用于葡萄糖的生物传感

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摘要

A new amperometric enzyme electrode and its biofuel cell were fabricated based on a glucose oxidase (GOx)-poly(3-anilineboronic acid) (PABA)-Pd nanoparticles (PdNPs) bionanocomposite for biosensing of glucose. Briefly, Pd was electroplated on a multiwalled carbon nanotubes (MWCNTs)-modified Au electrode, and the GOx-PABA-PdNPs bionanocomposite was prepared on the Pd-plate/MWCNTs/Au electrode through the chemical oxidation of a GOx-3-anilineboronic acid adduct by Na2PdCl4, followed by electrode-modification with an outer-layer chitosan (CS) film. The thus-prepared CS/GOx-PABA-PdNPs/Pd-plate/MWCNTs/Au electrode exhibited a linear amperometric response to glucose concentration from 2.0 mu M to 4.5 mM with a sensitivity of 160 mu A/mM/cm(2), sub-mu M detection limit, and excellent operation/storage stability in the first-generation biosensing mode, as well as excellent analytical performance in the second-generation biosensing mode. The good recoveries of glucose obtained from spiked urine samples revealed the application potential of our amperometric enzyme electrode. In addition, a glucose/O-2 biofuel cell was constructed using this enzyme electrode as the anode and a Pt/MWCNTs/Au electrode as the cathode, and this biofuel cell as a self-powered biosensing device showed a linear voltage response to glucose concentration from 100 mu M to 13.5 mM with a sensitivity of 43.5 mV/mM/cm(2) and excellent operation/storage stability. (C) 2015 Elsevier B.V. All rights reserved.
机译:基于葡萄糖氧化酶(GOx)-聚(3-苯胺硼酸)(PABA)-Pd纳米粒子(PdNPs)的生物纳米复合材料制备了一种新型的安培酶电极及其生物燃料电池,用于葡萄糖的生物传感。简而言之,将Pd电镀在多壁碳纳米管(MWCNTs)修饰的Au电极上,并通过GOx-3-苯胺硼酸的化学氧化在Pd板/ MWCNTs / Au电极上制备GOx-PABA-PdNPs纳米复合材料。由Na2PdCl4加成,然后用外层壳聚糖(CS)膜进行电极修饰。如此制备的CS / GOx-PABA-PdNPs / Pd-plate / MWCNTs / Au电极对葡萄糖浓度从2.0μM至4.5 mM表现出线性安培响应,灵敏度为160μA/ mM / cm(2),亚微米级检测限,在第一代生物传感模式下具有出色的操作/存储稳定性,在第二代生物传感模式下具有出色的分析性能。从加标尿样中获得的葡萄糖的良好回收率揭示了我们的安培酶电极的应用潜力。另外,以该酶电极为阳极,以Pt / MWCNTs / Au电极为阴极,构建了葡萄糖/ O-2生物燃料电池,该生物燃料电池作为自供电生物传感器,对葡萄糖表现出线性的电压响应。浓度从100μM到13.5 mM,灵敏度为43.5 mV / mM / cm(2),并且具有出色的操作/存储稳定性。 (C)2015 Elsevier B.V.保留所有权利。

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