Department of Chemistry, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.
Center of Research Excellence in Nanotechnology, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.
Analyst. 2021 May 17;146(10):3317-3327. doi: 10.1039/d1an00222h.
Herein, we report the fabrication of NiO-CoO films for the electrochemical detection of hydrazine. An electrochemical sensor was devised where aerosol assisted chemical vapor deposition (AACVD) was employed as a nifty method for synthesizing NiO-CoO films over FTO electrodes. NiO-CoO-nanoparticle (NP) and NiO-CoO-nanowall (NW) films were fabricated over FTO substrates. The electrocatalytic analysis was performed in a standard three-electrode electrochemical setup. NiO-CoO-NW/FTO showed enhanced electro-oxidation for hydrazine at all concentrations tested. XRD, XPS, EDX, and FE-SEM techniques were used to characterize the structural, morphological, and elemental properties of NiO-CoO films. The results showed improved sensitivity, a large dynamic range, and good long-term stability of NiO-CoO-NW films. The amperometric response was used to measure the detection limit, and it was as low as 0.01 μM, and the sensitivity is ∼33 μA μM-1 cm-2. Besides, the NiO-CoO-NW/FTO electrodes showed significant selectivity towards hydrazine upon testing cross-sensitivity to other common interfering molecules. This strategy of using NiO-CoO-NW/FTO electrodes prepared via AACVD has great potential for the direct determination of hydrazine in environmental sensing applications.
本文报告了用于电化学检测肼的 NiO-CoO 薄膜的制备。设计了一种电化学传感器,其中气溶胶辅助化学气相沉积(AACVD)被用作在 FTO 电极上合成 NiO-CoO 薄膜的巧妙方法。在 FTO 基底上制备了 NiO-CoO-纳米颗粒(NP)和 NiO-CoO-纳米墙(NW)薄膜。在标准三电极电化学装置中进行了电催化分析。在所有测试浓度下,NiO-CoO-NW/FTO 对肼都表现出增强的电氧化作用。XRD、XPS、EDX 和 FE-SEM 技术用于表征 NiO-CoO 薄膜的结构、形态和元素性质。结果表明,NiO-CoO-NW 薄膜具有提高的灵敏度、大的动态范围和良好的长期稳定性。安培响应用于测量检测限,低至 0.01 μM,灵敏度约为 33 μA μM-1 cm-2。此外,NiO-CoO-NW/FTO 电极在测试对其他常见干扰分子的交叉灵敏度时,对肼表现出显著的选择性。这种使用 AACVD 制备的 NiO-CoO-NW/FTO 电极的策略在环境传感应用中具有直接测定肼的巨大潜力。