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Development of Amperometric Glucose Biosensor Based on Prussian Blue Functionlized TiO2 Nanotube Arrays

机译:基于普鲁士蓝功能化TiO2纳米管阵列的安培葡萄糖生物传感器的开发。

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摘要

Amperometric biosensors consisting of oxidase and peroxidase have attracted great attention because of their wide application. The current work demonstrates a novel approach to construct an enzymatic biosensor based on TiO2 nanotube arrays (TiNTs) as a supporting electrode on which Prussian Blue (PB)-an “artificial enzyme peroxidase” and enzyme glucose oxidase (GOx) have been immobilized. For this, PB nanocrystals are deposited onto the nanotube wall photocatalytically using the intrinsic photocatalytical property of TiO2, and the GOx/AuNPs nanobiocomposites are subsequently immobilized into the nanotubes via the electrodeposition of polymer. The resulting electrode exhibits a fast response, wide linear range, and good stability for glucose sensing. The sensitivity of the sensor is as high as 248 mA M−1 cm−2, and the detection limit is about 3.2 μM. These findings demonstrate a promising strategy to integrate enzymes and TiNTs, which could provide an analytical access to a large group of enzymes for bioelectrochemical applications including biosensors and biofuel cells.
机译:由氧化酶和过氧化物酶组成的安培生物传感器因其广泛的应用而备受关注。当前的工作展示了一种新颖的方法来构建基于TiO2纳米管阵列(TiNTs)的酶促生物传感器作为支撑电极,普鲁士蓝(PB)-“人工酶过氧化物酶”和酶葡萄糖氧化酶(GOx)已固定在该电极上。为此,使用TiO2的固有光催化性能将PB纳米晶体光催化沉积到纳米管壁上,然后通过聚合物的电沉积将GOx / AuNPs纳米生物复合物固定在纳米管中。所得电极表现出快速响应,宽线性范围和良好的葡萄糖感测稳定性。传感器的灵敏度高达248 mA M −1 cm −2 ,检测极限约为3.2MμM。这些发现证明了整合酶和TiNT的有前途的策略,可以为生物电化学应用(包括生物传感器和生物燃料电池)提供对一大批酶的分析途径。

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