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首页> 外文期刊>ACS Omega >UV Lithography-Assisted Fabrication of Low-Cost Copper Electrodes Modified with Gold Nanostructures for Improved Analyte Detection
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UV Lithography-Assisted Fabrication of Low-Cost Copper Electrodes Modified with Gold Nanostructures for Improved Analyte Detection

机译:紫外线光刻辅助制造用金纳米结构改性的低成本铜电极进行改进的分析物检测

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An in-house UV lithography setup has been optimized to fabricate low-cost disposable electrochemical sensing Cu electrodes using a copper clad board. In view of the high oxidation probability of copper, the low-cost electrodes were modified using different gold nanostructures and a conducing polymer PEDOT:PSS to attain maximal signal output and improved shelf-life. Zero-dimensional (0D) gold nanoparticles (~40 nm) and three-dimensional (3D) gold nanoflowers (~38 nm) mixed with PEDOT:PSS were used as signal-enhancing conductors for the ultrasensitive detection of our model contaminant, methylene blue dye (MB). The bare copper electrode was sensitive to MB, linearly within the range of 4–100 μM, with a limit of detection of 3.49 μM. While for gold nanoparticle-PEDOT:PSS-modified electrode, the sensitivity of the electrode was found to increase linearly in the range of 0.01–0.1 μM, and for gold nanoflowers-PEDOT:PSS, the sensitivity achieved was 0.01–0.1 μM with the LOD as 0.0022 μM. For a PEDOT:PSS-modified Cu electrode, used as a comparative to study the contributing role of gold nanostructures towards improved sensitivity, the linearity was found to be in the range of 0.1–1.9 μM with the LOD as 0.0228 μM. A 6 times improvement in signal sensitivity for the nanoflower-PEDOT:PSS electrode compared to the nanoparticle-PEDOT:PSS-modified electrode indicates the influence of nanoparticle shape on the electrode efficiency. 3D gold nanoflowers with a large surface area-to-volume ratio and a high catalytic activity prove to be a superior choice for electrode modification.
机译:已经优化了内部UV光刻设置以使用铜包层制造低成本一次性电化学传感Cu电化。考虑到铜的高氧化概率,使用不同的金纳布鲁纳米结构和调节聚合物PEDOT进行修饰低成本电极:PSS以获得最大信号输出和改善的保质期。零维(0D)金纳米颗粒(〜40nm)和三维(3D)金纳米母线(〜38nm)与PEDOT混合:PSS用作信号增强导体,用于我们模型污染物,亚甲基蓝色的超敏检测染料(MB)。裸铜电极对Mb敏感,线性地在4-100μm的范围内,检测限为3.49μm。对于黄金纳米颗粒 - PEDOT:PSS改性电极,发现电极的敏感性在0.01-0.1μm的范围内线性增加,并且对于金纳米贷款器 - PEDOT:PSS,所达到的灵敏度为0.01-0.1μm LOD为0.0022μm。对于PEDOT:PSS改性的Cu电极,用作研究金纳米结构对改善敏感性的贡献作用的比较,发现线性度在0.1-1.9μm的范围内,腰部为0.0228μm。与纳米颗粒 - PEDOT相比,PSS电极的信号灵敏度的6倍改善:PSS改性电极表示纳米粒子形状对电极效率的影响。 3D具有大表面积到体积比和高催化活性的金纳米锤子被证明是电极改性的优选选择。

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