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首页> 外文期刊>Journal of Colloid and Interface Science >Vertically-aligned Prussian blue/carbon nanotube nanocomposites on a carbon microfiber as a biosensing scaffold for ultrasensitively detecting glucose
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Vertically-aligned Prussian blue/carbon nanotube nanocomposites on a carbon microfiber as a biosensing scaffold for ultrasensitively detecting glucose

机译:垂直排列的普鲁士蓝/碳纳米管纳米复合材料,在碳微纤维上作为生物传感支架,用于超灵敏地检测葡萄糖

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摘要

We describe our assembly and the analytical performance of a glucose biosensor consisting of an array of carbon nanotubes (CNTs) that perpendicularly fall on a 7-μm-diameter carbon fiber and are modified by a "dual" enzymatic system- viz. glucose oxidase (GOx) and Prussian blue (PB, an artificial peroxidase). We chose to use the PB-catalyzed reduction reaction of hydrogen peroxide, an end-product of the GOx-catalyzed oxidation of glucose, to "relay" electrons from GOx to the substrate electrode. We highlight that the electrode-structural alignment of this novel biosensing system plays a crucial role in optimizing the electrochemical- and catalytic-reactions of the enzymes with their substrates. The vertical alignment of enzyme-modified CNTs with the pores located between neighboring individual CNTs creates the simplest optimized pathways for substrates to diffuse to the enzymes and for the generated electrical signals to transport along the nanotube's length to an electronic analyzer. Consequently, the glucose biosensor thus constructed exhibits a high sensitivity of 4.9. μA/mM with a detection limit of 0.05. mmol/L and long-term stability in amperometrically detecting glucose. Our long-range-order assembling of electroactive biomolecules and microscaleanoscale materials into a multifunctional biocomposite accounts for this superb performance of vital importance in their realistic applications in deciphering glucose and hydrogen peroxide.
机译:我们描述了葡萄糖生物传感器的组装和分析性能,该传感器由垂直落在直径为7μm的碳纤维上的碳纳米管(CNT)阵列组成,并通过“双重”酶系统修饰。葡萄糖氧化酶(GOx)和普鲁士蓝(PB,人工过氧化物酶)。我们选择使用PB催化的过氧化氢的还原反应(GOx催化葡萄糖氧化的最终产物)将电子从GOx“中继”到基质电极。我们强调,这种新型生物传感系统的电极结构比对在优化酶及其底物的电化学和催化反应中起着至关重要的作用。酶修饰的CNT与位于相邻单个CNT之间的孔的垂直对齐为底物扩散到酶和生成的电信号沿着纳米管的长度传输到电子分析仪创造了最简单的优化途径。因此,如此构造的葡萄糖生物传感器表现出4.9的高灵敏度。 μA/ mM,检出限为0.05。在安培法检测葡萄糖中具有mmol / L和长期稳定性。我们将电活性生物分子和微米级/纳米级材料长距离组装为多功能生物复合材料的原因在于,其卓越的性能对于其在解密葡萄糖和过氧化氢的实际应用中至关重要。

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