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一种用于电化学电子自旋共振的微流控通道流动池。

A microfluidic channel flow cell for electrochemical ESR.

作者信息

Wain Andrew J, Compton Richard G, Le Roux Rudolph, Matthews Sinéad, Yunus Kamran, Fisher Adrian C

机构信息

Physical and Theoretical Chemistry Laboratory, Oxford University, South Parks Road, Oxford, OX1 3QZ, United Kingdom.

出版信息

J Phys Chem B. 2006 Dec 28;110(51):26040-4. doi: 10.1021/jp064903b.

Abstract

The design, fabrication, and characterization of microfluidic channel flow devices for in situ simultaneous hydrodynamic electrochemical ESR is reported. The microelectrochemical reactors consist of gold film electrodes situated within rectangular ducts of height 350 microm and widths in the range 500-2000 microm. The small dimensions of the channels result in minimal dielectric loss when centralized within a cylindrical TE011 resonant cavity, leading to a high level of sensitivity. This is demonstrated by using the one-electron oxidation of N,N,N',N'-tetramethyl-p-phenylenediamine (TMPD) in acetonitrile as a model system, wherein the ESR spectra obtained for the corresponding stable radical cation are of a high signal-to-noise ratio. Signal intensity is measured as a function of flow rate for this system, and the behavior is validated by means of 3-dimensional numerical modeling of the hydrodynamic flow profile.

摘要

报道了用于原位同步流体动力电化学电子自旋共振的微流体通道流动装置的设计、制造和表征。微电化学反应器由位于高度为350微米、宽度在500 - 2000微米范围内的矩形管道内的金膜电极组成。通道的小尺寸使得当集中在圆柱形TE011谐振腔内时介电损耗最小,从而实现了高灵敏度。以乙腈中N,N,N',N'-四甲基对苯二胺(TMPD)的单电子氧化作为模型系统证明了这一点,其中获得的相应稳定自由基阳离子的电子自旋共振光谱具有高信噪比。测量了该系统信号强度随流速的变化,并通过流体动力流型的三维数值模拟验证了该行为。

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