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首页> 外文期刊>Electrochimica Acta >Piezoelectric resonator and drag force study of the properties of an interfacial hexafluorophosphate solution layer at gold electrode surface
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Piezoelectric resonator and drag force study of the properties of an interfacial hexafluorophosphate solution layer at gold electrode surface

机译:金电极表面的界面六氟磷酸盐溶液层的压电谐振器和阻力研究

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Piezoelectric resonator measurements show that there is a minimum of interfacial viscosity of sodium hexafluorophosphate aqueous solution (approximately 1% of the bulk viscosity) at the potential of zero charge of gold electrode. Drag force measurements confirm interfacial viscosity dependence on the potential obtained from piezoelectric resonator measurements but the minimum is lower (approximately 5% of the bulk viscosity). Potential dependence of interfacial viscosity has been determined in the absence of confinement of fluid between a probe and surface what provides useful comparison to probe-based methods where confinement is inherent to the measurement and where additional model assumptions are needed to separate confinement effects. By controlling the applied potential it is possible to control the viscosity of liquid layer close to the solid interface, what increases the ability to actively manipulate a wall-bounded liquid flow field to effect a desired change.
机译:压电谐振器的测量结果表明,在金电极零电荷的电势下,六氟磷酸钠水溶液的界面粘度最小(约为本体粘度的1%)。拖曳力测量证实了界面粘度取决于从压电谐振器测量中获得的电势,但是最小值较低(大约为体粘度的5%)。在没有限制探针和表面之间流体的情况下,已经确定了界面粘度的潜在依赖性,这与基于探针的方法(其中限制是测量固有的并且需要额外的模型假设来分离限制作用)进行有用的比较。通过控制施加的电势,可以控制靠近固体界面的液体层的粘度,这增加了主动操纵壁垒式液体流场以实现所需变化的能力。

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