首页> 外文会议>Annual International Conference on Micro Electro Mechanical Systems >EFFECT OF NANO STRIPE CARBONIZED-POLYMER ELECTRODE ON HIGH S/N RATIO IN ELECTROCHEMICAL DETECTION
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EFFECT OF NANO STRIPE CARBONIZED-POLYMER ELECTRODE ON HIGH S/N RATIO IN ELECTROCHEMICAL DETECTION

机译:纳米条纹碳化 - 聚合物电极对电化学检测高S / N比的影响

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This paper presents a scaling effect of the nano stripe electrode made of carbonized-polymer on the S/N ratio in electrochemical detections. It is well known that microelectrodes show higher sensitivity and higher S/N ratio. Downsizing of electrode, however, causes a reduction in signal current. Co-author has proposed a novel theoretical concept of a stripe electrode to solve this trade-off. The S/N ratio increases with downsizing the width of the stripe electrode because the noise current exponentially decreases. The nano stripe electrode with 450 nm in width and 15 μm in the center-to-center separation of the electrode could achieve 17.15 times higher S/N ratio than that of a planar electrode having the same corresponding area size. Furthermore, comparisons of experimental and theoretical S/N ratios will be discussed.
机译:本文介绍了由碳化聚合物制成的纳米条纹电极上的电化学检测中的S / N比。众所周知,微电极显示出更高的灵敏度和更高的S / N比。然而,电极的缩小尺寸导致信号电流的降低。共同作者提出了一种条纹电极的新型理论概念来解决这一权衡。 S / N比随着条纹电极的宽度缩小,因为噪声电流指数呈指数级增小。在电极的中心到中心分离中具有450nm的纳米条纹电极和15μm的宽度和15μm可以达到比具有相同面积尺寸相同面积尺寸的平面电极的17.15倍。此外,将讨论实验和理论S / N比的比较。

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