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Characterization of Au@PtNP/GO nanozyme and its application to electrochemical microfluidic devices for quantification of hydrogen peroxide

机译:Au @ PtNP / GO纳米酶的表征及其在电化学微流体装置中过氧化氢定量的应用

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Nanostructured artificial enzymes, known as nanozymes, have been considered effective alternatives for natural enzymes with the attractive advantages. Herein, bimetallic Au and Pt nanoparticles with graphene oxide (GO) were immobilized chemically on the surface of agarose microbeads. Due to the synergistic effect of the bimetallic nanoparticles and GO (Au@PtNP/GO), this hybrid nanostructure exhibited strong peroxidase-like catalytic activity toward 3,3', 5,5'-tetramethylbenzidine (TMB) substrate in the presence of H2O2. Colorimetric determination of H2O2, indicated by the blue color of the oxidized TMB within 1 min, was observed using the Au@PtNP/GO nanozymes. To demonstrate practical application of the nanozymes, the Au@PtNP/GO microbeads were packed into a film-based electrochemical point-of-care (POC) device for sensitive and rapid H2O2 detection. Upon introduction of TMB substrate solution containing H2O2, the catalytically oxidized TMB was electrochemically reduced on the electrode surfaces, resulting in a broader detection range of H2O2 (1 mu M-3 mM) and a lower LOD (1.62 mu M) than achievable with the colorimetric detection method. Moreover, the developed POC devices showed the capability of accurate determination of H2O2 with strong repeatability and reproducibility in real sample test using artificial urine.
机译:被认为是纳米酶的纳米结构人工酶具有吸引人的优势,被认为是天然酶的有效替代品。在此,将具有氧化石墨烯(GO)的双金属Au和Pt纳米颗粒化学固定在琼脂糖微珠的表面上。由于双金属纳米颗粒和GO(Au @ PtNP / GO)的协同作用,这种杂化的纳米结构在H2O2存在下对3,3',5,5'-四甲基联苯胺(TMB)底物表现出很强的过氧化物酶样催化活性。 。使用Au @ PtNP / GO纳米酶观察到比色测定H2O2,该比色测定由1分钟内被氧化的TMB的蓝色表示。为了证明纳米酶的实际应用,将Au @ PtNP / GO微珠包装到基于膜的电化学即时检测(POC)设备中,以进行灵敏,快速的H2O2检测。引入含H2O2的TMB底物溶液后,在电极表面上电化学还原的TMB被电化学还原,导致H2O2的检测范围(1μM-3mM)和更低的LOD(1.62μM)比用H2O2所能达到的低。比色检测法。而且,在使用人工尿液进行的真实样品测试中,开发出的POC装置显示了准确测定H2O2的能力,具有很强的重复性和可重复性。

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