首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >One-Directional Fluidic Flow Induced by Chemical Wave Propagation in a Microchannel
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One-Directional Fluidic Flow Induced by Chemical Wave Propagation in a Microchannel

机译:在微通道中化学波传播引起的单向流体流动

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摘要

A one-directional flow induced by chemical wave propagation was investigated to understand the origin of its dynamic flow. A cylindrical injection port was connected with a straight propagation channel; the chemical wave was initiated at the injection port. Chemical waves propagated with a constant velocity irrespective of the channel width, indicating that the dynamics of the chemical waves were governed by a geometry-independent interplay between the chemical reaction and diffusion. In contrast, the velocity of the one-directional flow was dependent on the channel width. Furthermore, enlargement of the injection port volume increased the flow velocity and volume flux. These results imply that the one-directional flow in the microchannel is due to a hydrodynamic effect induced in the injection port. Spectroscopic analysis of a pH indicator revealed the simultaneous behavior between the pH increase near the injection port and the one-directional flow. Hence, we can conclude that the one-directional flow in the microchannel with chemical wave propagation was caused by a proton consumption reaction in the injection port, probably through liquid volume expansion by the reaction products and the reaction heat. It is a characteristic feature of the present system that the hydrodynamic flow started from the chemical wave initiation point and not the propagation wavefront, as observed for previous systems.
机译:研究了由化学波传播引起的单向流动,以了解其动态流动的起源。圆柱形的注入口与笔直的传播通道相连。化学波在进样口处引发。化学波以恒定速度传播,而与通道宽度无关,这表明化学波的动力学受化学反应和扩散之间不依赖于几何形状的相互作用的支配。相反,单向流动的速度取决于通道宽度。此外,喷射口体积的增大增加了流速和体积通量。这些结果表明,微通道中的单向流动是由于在注入口中引起的流体动力效应引起的。 pH指示剂的光谱分析显示,在进样口附近pH升高和单向流动之间同时发生行为。因此,我们可以得出结论,在微通道中具有化学波传播的单向流动是由注入口中的质子消耗反应引起的,可能是由于反应产物和反应热引起的液体体积膨胀。本系统的一个特征是流体动力流是从化学波起始点开始而不是从传播波前开始的,正如先前系统所观察到的那样。

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