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首页> 外文期刊>CERAMICS INTERNATIONAL >Fabrication of highly sensitive MnO2/F-MWCNT/Ta hybrid nanocomposite sensor with different MnO2 overlayer thickness for H2O2 detection
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Fabrication of highly sensitive MnO2/F-MWCNT/Ta hybrid nanocomposite sensor with different MnO2 overlayer thickness for H2O2 detection

机译:具有不同MNO2叠层厚度的高敏感MNO2 / F-MWCNT / TA混合纳米复合材料的制备,用于H2O2检测

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摘要

In this work, we report the development of MnO2/F-MWCNT/Ta hybrid nanocomposite sensor with different MnO2 overlayer thickness for the detection of H2O2 in real samples. A novel two-step process using a-beam evaporation and spray pyrolysis deposition was adopted for the synthesis of hybrid MnO2/F-MWCNT/Ta electrodes. SE morphology revealed smaller-sized, compact grains of MnO2 infiltrated on the outermost walls of MWCNTs. Raman analysis confirmed the existence of carbon nanotubes with abundant structural defects of MnO2 in the composite. The cyclic voltammetry results displayed a high peak current and narrowed over potential towards the reduction of H2O2. The sensor displayed a fast response ( 5 s), wide linear range (2-1510 mu M) and a low limit of detection (0.04 mu M) with significant anti-interfering properties, promising for the development of highly sensitive and reproducible biosensors. The three dimensional nanocomposite sensor also exhibited good recovery ( 98%), thus providing a favourable tool for analysis of H2O2 in milk samples.
机译:在这项工作中,我们报告了MNO2 / F-MWCNT / TA混合纳米复合材料传感器的开发,具有不同的MnO2重叠厚度,用于检测真实样品中的H2O2。采用了一种新的两步工艺,采用杂交MNO2 / F-MWCNT / Ta电极的合成合成。 SE形态显示在MWCNT的最外壁上渗入的较小尺寸的MNO2晶粒。拉曼分析证实了复合材料中具有丰富的MNO2结构缺陷的碳纳米管的存在。循环伏安法结果显示出高峰电流并缩小到降低H2O2的潜力。传感器显示出快速响应(& 5 s),宽线性范围(2-1510μm)和具有显着的防干扰性能的检测(0.04μm)的低限制,很有希望开发高度敏感和可重复性生物传感器。三维纳米复合材料传感器也表现出良好的回收率(& 98%),从而提供有利的工具,用于分析牛奶样品中的H2O2。

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