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Self-interconnecting Pt nanowire network electrode for electrochemical amperometric biosensor

机译:Self-interconnecting Pt纳米线网络电极对电化学测量电流的生物传感器

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摘要

One-dimensional Pt nanostructures are of considerable interest for the development of highly stable and sensitive electrochemical sensors. This paper describes a self-interconnecting Pt nanowire network electrode (PtNNE) for the detection of hydrogen peroxide (H2O2) and glucose with ultrahigh sensitivity and stability. The as-prepared PtNNE consists of polycrystalline nanowires with high-index facets along the side surface which provides more active surface atoms on kinks and steps, those ultralong nanowires being interconnected with each other to form a free-standing network membrane. The excellent structural features of the PtNNE promoted its performance as a Pt-based electrochemical sensor both in terms of electrocatalytic activity and stability. Amperometric measurements towards hydrogen peroxide were performed; the PtNNE sensor showed an extremely high sensitivity of 1360 mu A mM(-1) cm(-2). This excellent sensitivity is mainly attributed to the high-index facets of the nanowires resulting in their superior electrocatalytic activity towards H2O2, and the interconnected nanowire network forming an "electron freeway" transport model, which could provide multiple electron pathways and fast electron transport on the electrode, leading to rapid reaction and sensitive signal detection. The as-prepared PtNNE also holds promise as an oxidase-based biosensor. As a proof of concept, a PtNNE-based glucose biosensor also showed an outstanding sensitivity as high as 114 mu A mM(-1) cm(-2), a low detection limit of 1.5 mu M, and an impressive detection range from 5 mu M to 30 mM.
机译:一维Pt纳米结构的相当大的兴趣的发展高度稳定和灵敏的电化学传感器。self-interconnecting Pt纳米线网络氢的电极(PtNNE)检测双氧水(过氧化氢)和葡萄糖与超高灵敏度和稳定性。由多晶纳米线高指数面沿侧表面提供了更积极的缺陷和表面原子步骤,这些超长纳米线互相连接以形成一个独立的网络膜。PtNNE提升它的结构特性性能Pt-based电化学传感器无论是electrocatalytic活动稳定。过氧化氢进行;传感器表现出极高的敏感性1360亩一毫米(2)(1)厘米。敏感性主要归因于纳米线的高指数方面导致向上级electrocatalytic活动过氧化氢,纳米线网络互联形成一个“电子高速公路运输模型,可以提供多个电子通路在电极和快速的电子传递,导致快速反应和敏感的信号检测。承诺作为oxidase-based生物传感器。PtNNE-based概念的葡萄糖生物传感器显示一位杰出的灵敏度高达114μA毫米(2)(1)厘米,较低的检出限为1.5μM,和一个令人印象深刻的检测范围从5μ米至30毫米。

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