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Electrochemical Cycling-Induced Spiky CuxO/Cu Nanowire Array for Glucose Sensing

机译:电化学循环诱导的尖峰CuxO / Cu纳米线阵列用于葡萄糖传感

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摘要

The glucose level is an important biological indicator for diabetes diagnosis. In contrast with costly and unstable enzymatic glucose sensing, oxide-based glucose sensors own the advantages of low fabrication cost, outstanding catalytic ability, and high chemical stability. Here, we fabricate a self-supporting spiky CuxO/Cu nanowire array structure by electrochemical cycling treatment. The spiky CuxO/Cu nanowire is identified to be a Cu core passivated by a conformal Cu2O layer with extruded CuO petals, which provides abundant active sites for electrocatalytic reaction in glucose detection. An interruptive potential sweeping experiment is presented to elucidate the growth mechanism of the spiky CuxO/Cu nanostructure during the potential cycling treatment. The spiky CuxO/Cu nanowire array electrode exhibits a sensitivity of 1210 ± 124 μA·mM–1·cm–2, a wide linear detection range of 0.01–7 mM, and a short response time (<1 s) for amperometric glucose sensing. The study demonstrates a route to modulate oxide phase, crystal morphology, and electrocatalytic properties ofmetal/oxide core–shell nanostructures.
机译:葡萄糖水平是糖尿病诊断的重要生物学指标。与昂贵且不稳定的酶促葡萄糖感测相反,基于氧化物的葡萄糖传感器具有制造成本低,出色的催化能力和高化学稳定性的优点。在这里,我们通过电化学循环处理制备自支撑的尖峰CuxO / Cu纳米线阵列结构。尖刺的CuxO / Cu纳米线被鉴定为被带有挤出的CuO花瓣的共形Cu2O层钝化的Cu核,它为葡萄糖检测中的电催化反应提供了丰富的活性位点。提出了一个中断的电势清扫实验,以阐明尖峰的CuxO / Cu纳米结构在电势循环处理过程中的生长机理。尖刻的CuxO / Cu纳米线阵列电极的灵敏度为1210±124μA·mM –1 ·cm –2 ,线性检测范围为0.01–7 mM,对于安培型葡萄糖感测,响应时间短(<1 s)。这项研究表明了一种调节氧化相,结晶形态和电催化性能的途径。金属/氧化物核-壳纳米结构。

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