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A systematic study of the influence of nanoelectrode dimensions on electrode performance and the implications for electroanalysis and sensing

机译:系统研究纳米电极尺寸对电极性能的影响以及对电分析和传感的影响

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摘要

Micron resolution photolithography has been employed to make microsquare nanoband edge electrode (MNEE) arrays with reproducible and systematic control of the crucial dimensional parameters, including array element size and spacing and nanoelectrode thickness. The response of these arrays, which can be reproducibly fabricated on a commercial scale, is first established. The resulting characteristics (including high signal and signal-to-noise, low limit of detection, insensitivity to external convection and fast, steady-state, reproducible and quantitative response) make such nanoband electrode arrays of real interest as enhanced electroanalytical devices. In particular, the nanoelectrode response is presented and analysed as a function of nanometre scale electrode dimension, to assess the impact and relative contributions of previously postulated nanodimensional effects on the resulting response. This work suggests a significant contribution of migration at the band edges to mass transfer, which affects the resulting electroanalytical response even at ionic strengths as large as 0.7 mol dm-3 and for electrodes as wide as 50 nm. For 5 nm nanobands, additional nanoeffects, which are thought to arise from the fact that the size of the redox species is comparable to the band width, are also observed to attenuate the observed current. The fundamental insight this gives into electrode performance is discussed along with the consequent impact on using such electrodes of nanometre dimension.
机译:微米分辨率光刻技术已被用于制造具有可重复且系统地控制关键尺寸参数(包括阵列元件尺寸和间距以及纳米电极厚度)的微平方纳米带边缘电极(MNEE)阵列。首先建立了这些阵列的响应,这些响应可以以商业规模可复制地制造。所产生的特性(包括高信号和信噪比,低检测限,对外部对流不敏感以及快速,稳定的状态,可再现和定量的响应)使这种纳米带电极阵列成为增强电分析设备的真正关注点。特别地,纳米电极响应作为纳米级电极尺寸的函数被呈现和分析,以评估先前假定的纳米尺寸效应对所得响应的影响和相对贡献。这项工作表明,在能带边缘的迁移对传质有重要贡献,即使在离子强度高达0.7 mol dm-3且电极宽度达50 nm的情况下,这也会影响所得的电分析响应。对于5 nm的纳米带,还观察到了其他的纳米效应,这些效应是由于氧化还原物质的大小与带宽相当,这一事实引起的,从而削弱了观察到的电流。讨论了对电极性能的基本见解,以及对使用这种纳米尺寸电极的影响。

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