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首页> 外文期刊>Quimica nova >ELECTROCHEMICAL SETUP FOR A MULTICHANNEL DATA ACQUISITION SYSTEM WITH SPATIOTEMPORAL RESOLUTION
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ELECTROCHEMICAL SETUP FOR A MULTICHANNEL DATA ACQUISITION SYSTEM WITH SPATIOTEMPORAL RESOLUTION

机译:具有时空分辨率的多通道数据采集系统的电化学设置

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摘要

Spatiotemporal pattern formation in reaction-transport systems takes place spontaneously when the system is kept far from thermodynamic equilibrium. Targets, reaction fronts, waves, spirals, spots and stripes are some typical examples of selforganized structuring. In electrochemical systems, monitoring spatiotemporal patterns of potential in the solid/liquid interface can be done by the use of equally distributed microprobes located close to the working electrode. However, the physical size of each probe can limit the spatial resolution and alter mass transport properties. In contrast, the direct measurement of discrete electrodes does not suffer from this limitation and allows the accurate manipulation of the spatial coupling through changes in resistors connected to the electric circuit. In this paper, the development of an electrochemical setup for multichannel data acquisition with spatiotemporal resolution is described, especially to monitor low levels of currents usually observed in the electro-oxidation of small organic molecules.
机译:当反应体系远离热力学平衡时,它会自发发生时空模式的形成。目标,反应前沿,波浪,螺旋,斑点和条纹是自组织结构的一些典型示例。在电化学系统中,可以通过使用位于工作电极附近的均匀分布的微探针来监测固/液界面中电位的时空模式。但是,每个探针的物理尺寸可能会限制空间分辨率并改变质量传输属性。相反,离散电极的直接测量不受此限制,并且允许通过连接到电路的电阻器的变化来精确地操纵空间耦合。在本文中,描述了用于时空分辨率的多通道数据采集的电化学装置的开发,尤其是监视小有机分子的电氧化中通常观察到的低电流水平。

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