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Co-sputter deposited nickel-copper bimetallic nanoalloy embedded carbon films for electrocatalytic biomarker detection

机译:Co-sputter沉积镍铜双金属nanoalloy嵌入式碳薄膜electrocatalytic生物标志物检测

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摘要

We report the fabrication of a nickel (Ni)-copper (Cu) bimetallic nanoalloy (similar to 3 nm) embedded carbon film electrode with the unbalanced magnetron (UBM) co-sputtering technique, which requires only a one-step process at room temperature. Most of each nanoalloy body was firmly embedded in a chemically stable carbon matrix with an atomically flat surface (Ra: 0.21 nm), suppressing the aggregation and/or detachment of the nanoalloy from the electrode surface. The nanoalloy size and composition can be controlled simply by individually controlling the target powers of carbon, Ni and Cu, which also makes it possible to localize the nanoalloys near the electrode surface. This electrode exhibited excellent electrocatalytic activity for D-mannitol, which should be detected with a low detection limit in urine samples for the diagnosis of severe intestinal diseases. With a Ni/Cu ratio of around 64/36, the electrocatalytic current per metal area was 3.4 times larger than that of an alloy film electrode with a similar composition (similar to 70/30). This improved electrocatalytic activity realized higher stability (n = 60, relative standard deviation (RSD): 4.6%) than the alloy film (RSD: 32.2%) as demonstrated by continuous measurements of D-mannitol.
机译:我们报告的制造镍铜(镍)(铜)双金属nanoalloy(类似于3海里)嵌入式碳膜电极的不平衡磁控管(UBM) co-sputtering技术,它只需要一个单步过程在室温下。是牢牢地嵌在一个化学稳定碳矩阵与一个自动平面(Ra: 0.21海里),和/或抑制聚合超然的nanoalloy电极表面。控制通过单独控制目标国家的碳,镍和铜也可以本地化nanoalloys在电极表面附近。表现出优秀的electrocatalytic活动D-mannitol,这应与较低的检测检出限的尿液样本严重的肠道疾病的诊断。镍/铜约64/36的比例,electrocatalytic当前每金属面积为3.4倍与类似的合金薄膜电极作文(类似于70/30)。electrocatalytic活动实现更高的稳定(n = 60,相对标准偏差(标准偏差):4.6%)比合金的电影(RSD: 32.2%)证明了连续测量D-mannitol。

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