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首页> 外文期刊>Journal of nanoscience and nanotechnology >Photolithographic Fabrication of Micro-Patterned, Nanoscale Prussian Blue (PB) Arrays for Electrocatalytic Analysis of Ascorbic Acid
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Photolithographic Fabrication of Micro-Patterned, Nanoscale Prussian Blue (PB) Arrays for Electrocatalytic Analysis of Ascorbic Acid

机译:微图案化的纳米级普鲁士蓝(PB)阵列的光刻制备,用于抗坏血酸的电催化分析

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摘要

A micro-patterned Prussian Blue (PB) array of nanometer thickness was fabricated using soft photolithography and voitammetric deposition for electrocatalytic detection of biomolecules. A self-assembled alkylthiol monolayer on gold was photooxidized by UV irradiation with a TEM mask, generating an imprinted pattern into which a PB microarray was subsequently deposited. Cyclic voltammetric and microscopic characterization indicates that the PB arrays demonstrate improved electrochemical stability as compared to conventional PB films, particularly at neutral pH, allowing scores of potential cyclings with little film deterioration. The PB film thickness in the array can be conveniently controlled by varying deposition time. Facile electron transfer was observed on the array electrode and the effect of the SAM layer on electrochemical response was investigated. The use of PB arrays for electrocatalytic analysis of biologically significant molecules was demonstrated with ascorbic acid (AA). The calibration curve for AA shows a linear relationship over the concentration range of 1.0×10{sup}(-5) to 8×10{sup}(-7) M with a correlation coefficient of 0.99. The detection limit was determined to be 1×10{sup}~8 M, which is about 100 times lower than the reported value on a conventional PB electrode. The method developed here provides a new functional surface for bioanalysis using electrocatalytic principles.
机译:使用软光刻和伏安沉积技术制备的纳米级微图案普鲁士蓝(PB)阵列,用于电催化检测生物分子。金的自组装烷硫醇单层通过用TEM掩模进行UV辐照而被光氧化,从而生成印记图案,随后将PB微阵列沉积到其中。循环伏安法和显微表征表明,与常规PB膜相比,PB阵列表现出改善的电化学稳定性,尤其是在中性pH值下,可在数十次潜在的循环过程中降低膜的劣化。可以通过改变沉积时间方便地控制阵列中的PB膜厚度。在阵列电极上观察到容易的电子转移,并且研究了SAM层对电化学响应的影响。用抗坏血酸(AA)证明了PB阵列用于生物重要分子的电催化分析。 AA的校准曲线在1.0×10 {sup}(-5)到8×10 {sup}(-7)M的浓度范围内显示线性关系,相关系数为0.99。检出限确定为1×10 {sup}〜8 M,比常规PB电极的报告值低约100倍。此处开发的方法为使用电催化原理的生物分析提供了新的功能表面。

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