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Individually Addressable Gel-Integrated Voltammetric Microelectrode Array for High-Resolution Measurement of Concentration Profiles at Interfaces

机译:可单独寻址的凝胶集成伏安微电极阵列,用于高分辨率测量界面浓度

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摘要

The application of a novel voltammetric probe, based on an individually addressable gel-integrated microelectrode array (IA-GIME), for real-time, high-spatial resolution concentration profile measurements at interfaces is described. Reliability and validity of steep metal concentration gradients obtained with this novel system have been demonstrated by performing systematic tests at well-controlled liquid-liquid and liquid-solid interfaces. The liquid-liquid interface was formed by two layers of aqueous solutions with different components; only one layer contained trace metal ions (Pb(II) and Cd(II)); the individually addressable microelectrode array was placed at the interface of the liquid-liquid system; the concentration profiles were recorded as function of time; and the effective diffusion coefficients were calculated. The liquid-"solid" interface was formed from an aqueous solution layer overlying a bed of silica particles saturated with an aqueous solution. The sensor array has been used to monitor the diffusion processes of Tl(I) or Pb(II) from the liquid phase to the "solid" phase. The influences of porosity, geometry of the porous media, and complexation between metal ion and silica, on the diffusion processes, have been studied. All these results show that correct diffusion profiles of metal ions at interfaces can be obtained with 200-μm resolution with the IA-GIME. They also demonstrate that, for measurements in "solid" phase, the aforementioned factors must be considered carefully for correct calibration of any electrodes and the gel-integrated microelectrodes are unique tools to enable calibration of the sensors with synthetic solutions.
机译:描述了基于可单独寻址的凝胶集成微电极阵列(IA-GIME)的新型伏安探针在界面实时,高空间分辨率浓度分布测量中的应用。通过在良好控制的液-液和液-固界面处进行系统测试,已证明了使用该新型系统获得的陡峭金属浓度梯度的可靠性和有效性。液-液界面是由两层具有不同成分的水溶液形成的。仅一层含有痕量金属离子(Pb(II)和Cd(II));可单独寻址的微电极阵列放置在液-液系统的界面处。将浓度曲线记录为时间的函数;并计算出有效扩散系数。液体-“固体”界面由覆盖有水溶液的二氧化硅颗粒床的水溶液层形成。传感器阵列已用于监测Tl(I)或Pb(II)从液相到“固相”的扩散过程。研究了孔隙率,多孔介质的几何形状以及金属离子与二氧化硅之间的络合对扩散过程的影响。所有这些结果表明,使用IA-GIME,可以以200μm的分辨率获得正确的界面金属离子扩散曲线。他们还证明,对于“固相”阶段的测量,必须正确考虑上述因素才能正确校准任何电极,并且凝胶集成微电极是独特的工具,能够用合成溶液校准传感器。

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