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Facile Fabrication of Hierarchical rGO/PANI@PtNi Nanocomposite via Microwave-Assisted Treatment for Non-Enzymatic Detection of Hydrogen Peroxide

机译:通过微波辅助处理的分层RGO / PANI @ PTNI纳米复合材料的构造,用于非酶促检测过氧化氢的非酶促检测

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摘要

A hierarchical composite based on the modified reduced graphene oxide with platinum-nickel decorated polyaniline nano-spheres (rGO/PANI@PtNi) was facilely prepared via microwave-assisted self-reduction for an application in nonenzymatic hydrogen peroxide (H2O2) detection. Compared to the pristine rGO, the composite exhibited a much tougher surface due to the stacking of conductive PANI nano-spheres on rGO sheets, leading to good dispersion of PtNi nanoparticles and a large active area. Furthermore, the multi-valance Ni2+/3+ in the PtNi particles effectively promoted the catalytic property of Pt sites and facilitated a superior electrochemical performance of PtNi alloy than that of neat Pt. Owing to the synergistic effect of the improved electrical conductivity and the promoted electrocatalytical property, the modified glassy carbon electrode (GCE) with rGO/PANI@PtNi nanocomposite displayed an outstanding electrochemical sensitivity towards H2O2 with a fast response time (<2 s), a wide linear range (0.1−126.4 mM), a low detection limit (0.5 µM), as well as a long-life stability for one week without obvious degradation. This novel strategy opens a novel and promising approach to design high performance sensors for H2O2 detection.
机译:通过微波辅助自降低,基于具有铂 - 镍的改性石墨烯氧化物的分层复合材料(RGO / PANI @ PTNI)以微波辅助的自我减少,在非酶氢过氧化氢(H2O2)检测中的应用。与原始RGO相比,复合材料由于RGO片材上的导电PANI纳米球堆叠而表现出大得多的表面,导致PTNI纳米粒子和大型活性区域的良好分散。此外,PTNI颗粒中的多价Ni2 + / 3 +有效地促进了Pt位点的催化性能,并促进了PTNI合金的优异电化学性能,而不是整齐的Pt。由于改进的导电性和促进的电催化性能,改性玻璃碳电极(GCE)与RGO / PANI @PTNI纳米复合材料具有快速响应时间(<2 s),呈现出朝向H2O2的出色电化学敏感性。宽线性范围(0.1-126.4毫米),低检测极限(0.5μm),以及一周的长寿命稳定性,无明显降解。这种新颖的策略开辟了一种新颖的和有希望的方法来设计H2O2检测的高性能传感器。

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