首页> 外文期刊>IEEE sensors journal >One Pot Hydrothermal Synthesis of Large Area Nano Cube Like ZnSnO3 Perovskite for Simultaneous Sensing of Uric Acid and Dopamine Using Differential Pulse Voltammetry
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One Pot Hydrothermal Synthesis of Large Area Nano Cube Like ZnSnO3 Perovskite for Simultaneous Sensing of Uric Acid and Dopamine Using Differential Pulse Voltammetry

机译:ZnSNO3钙钛矿大面积纳米立方体的一种盆栽水热合成,用于使用差脉冲伏安法同时检测尿酸和多巴胺

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We report ultra-selective zinc stannate nano cubes (ZnSnO3) modified glassy carbon electrode (GCE) for simultaneous detection of Uric Acid (UA) and Dopamine (DA) using differential pulse voltammetry (DPV) technique. The ZnSnO3 nano cubes were synthesized via one-pot hydrothermal technique. The orthorhombic phase formation of nano cubes structured ZnSnO3 was confirmed through X-ray diffraction (XRD) and scanning electron microscopy (SEM) imaging. The sensor exhibited very distinct oxidation potentials and excellent sensitivity with wide dynamic ranges of detection ranging from 10 nM to 5 mu M and 1 mu M to 5 mM with a very low limit of detections of 2.6 nM and 550 nM towards DA and UA respectively. The sensing mechanism can be ascribed to the simultaneous electro-oxidation process of DA and UA at the 3d orbital SnO6 octahedra sites facilitated with the Sn2+/Sn4+ oxidation states of Sn in line with the stress induced electrical property transformation of ZnSnO3 due to its piezoelectric nature. The as fabricated ZnSnO3/GCE sensor was further successfully evaluated for simultaneous detection of UA and DA in the simulated blood serum samples. This simple strategy for developing ZnSnO3 perovskite modified electrode paves way to develop electrochemical sensing platforms for bioanalytical applications.
机译:我们报告超选择性锌静止纳米立方体(ZnSNO3)改性玻璃电极(GCE),用于使用差分脉冲伏安法(DPV)技术同时检测尿酸(UA)和多巴胺(DA)。通过单罐水热技术合成ZnSNO3纳米立方体。通过X射线衍射(XRD)和扫描电子显微镜(SEM)成像证实了纳米立方体结构化ZnSNO3的正极相形成。传感器表现出非常明显的氧化电位和优异的敏感性,检测范围宽度为10nm至5μm,1μm至5mm,分别朝向DA和UA的6.6nm和550nm的最低限度。感测机构可以在促进SN2 + / SN4 +氧化态的3D轨道SnO6八面体位点处的DA和UA的同时电氧化过程符合SN2 + / SN4 +氧化状态,其由于其压电性质而导致ZnSnO3的应力诱导的电性能转化。进一步成功地评估了作为制造的ZnSNO 3 / GCE传感器,以便在模拟血清样品中同时检测UA和DA。这种简单的开发ZnSNO3 PEROVSKITE改性电极的策略为生物分析应用开发电化学传感平台。

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