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首页> 外文期刊>Journal of solid state electrochemistry >Thin layers formed by the oriented 2D nanocrystals of birnessite-type manganese oxide as a new electrochemical platform for ultrasensitive nonenzymatic hydrogen peroxide detection
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Thin layers formed by the oriented 2D nanocrystals of birnessite-type manganese oxide as a new electrochemical platform for ultrasensitive nonenzymatic hydrogen peroxide detection

机译:由BiRneryite型锰氧化物的定向2D纳米晶体形成的薄层作为用于超细偶象的过氧化氢检测的新型电化学平台

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摘要

Thin layers formed by the arrays of the vertically oriented 2-dimensional nanocrystals of Birnessite-type manganese oxide CuxMnO2.nH(2)O were synthesized for the first time by the reaction of gaseous ozone with the surface of aqueous solutions of manganese (II) acetate and copper (II) acetate salts mixture. The obtained layers were placed onto the surface of indium tin oxide (ITO)-coated glass electrodes and characterized by scanning electron microscopy (SEM), transmission electron microscopy (TEM), energy dispersive X-ray spectroscopy (EDX), X-Ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR). The electrochemical performance of the layers was examined by cyclic voltammetry (CV). It was found that the synthesized structures are formed by the 2D nanocrystals with the thickness of 3-6nm. The atomic concentration of copper x depends on the ratio of Cu(CH3COO)(2) and Mn(CH3COO)(2) solution concentrations and can be as much as 0.35. The obtained layers were tested as the electrochemical platform for nonenzymatic hydrogen peroxide sensing. It was shown that the electrode can provide an ultrasensitive H2O2 determination with the limit of detection of 0.4nM and linear concentration range that lies in the region of nanomolar concentrations. We assume that the observed effects are due to the morphology of the synthesized layers, which ensures maximum contact of the analyte with the active sites of 2D nanocrystals of CuxMnO2 . nH(2)O. Comparison of the obtained analytical characteristics with the literature data indicates the good prospects of the synthesized nanomaterial for its use as a working electrode for nonenzymatic H2O2 sensor.
机译:由Birneryite型锰氧化物CuxmnO2.nH(2)O的垂直定向的二维纳米晶体的阵列形成的薄层是通过气态臭氧与锰(II)的水溶液表面的反应合成1次乙酸盐和铜(II)乙酸盐混合物。将所得层置于氧化铟锡(ITO)涂覆的玻璃电极的表面上,并通过扫描电子显微镜(SEM),透射电子显微镜(TEM),能量分散X射线光谱(EDX),X射线光电子光谱学(XPS),X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)。通过环状伏安法(CV)检查层的电化学性能。发现合成结构由厚度为3-6nm的2D纳米晶体形成。铜X的原子浓度取决于Cu(CH 3 COO)(2)和Mn(CH 3 COO)(2)溶液浓度的比例,并且可以高达0.35。将所得层作为非酶氢过氧化氢感测的电化学平台。结果表明,电极可以提供超敏感的H2O2测定,其检测的检测极限和线性浓度范围内位于纳米摩尔浓度的区域。我们假设观察到的效果是由于合成层的形态,可确保分析物与CuxmnO 2的2D纳米晶体的活性位点的最大接触。 nh(2)o。与文献数据的获得的分析特性的比较表明了合成的纳米材料的良好前景,其用作非酶H2O2传感器的工作电极。

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