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Electrochemical Behavior of Gold Nanoparticles Modified Nitrogen Incorporated Diamond-like Carbon Electrode and Its Application in Glucose Sensing

机译:金纳米颗粒的电化学行为改性氮气掺入金刚石状碳电极及其在葡萄糖传感中的应用

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Gold nanoparticles (NPs) of 10-50 nm in diameter were synthesized on nitrogen incorporated diamond-like carbon (DLC:N) thin film electrode by electrodeposition. The deposition process of Au was investigated by cyclic voltarnmetry and chronoamperometry. The morphology of Au NPs was characterized by scanned electron microscopy. The potentiostatic current-time transients showed a progressive nucleation of Au and growth controlled by diffusion according to the Scharifker-Hills model. The electrochemical properties of Au-DLC:N electrode and its ability to sense glucose were investigated by voltammetric and amperometric measurements. The results showed that the Au NPs acted as nanoelectrodes improved the electron transfer and electrocatalytic oxidation of glucose on DLC:N electrode. The Au-DLC:N electrode exhibited fast sensing response, a linearity from 0.5 to 25 mM and a detection limit of 120μm. The stable electrochemical properties of Au-DLC:N electrode hinted its potential application as a glucose biosensor.
机译:直径为10-50nm的金纳米颗粒(NPS)在氮气掺入的金刚石状碳(DLC:N)薄膜电极上合成了10-50nm。通过循环电压和计时法研究了Au的沉积过程。扫描电子显微镜表征Au NP的形态。电位稳压的电流时间瞬变表明,根据Scharifker-Hills模型,通过扩散控制的AU和生长的逐渐成核。通过伏安和电流测量研究了AU-DLC:N电极及其感测葡萄糖能力的电化学性质。结果表明,AU NPS作用为纳米电极改善了DLC:N电极上的电子传递和电催化氧化。 AU-DLC:N电极表现出快速的感测响应,线性度为0.5至25mm,检测限为120μm。 AU-DLC的稳定电化学性质:N电极暗示其作为葡萄糖生物传感器的潜在应用。

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