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Gastight Hydrodynamic Electrochemistry: Design for a Hermetically Sealed Rotating Disk Electrode Cell

机译:气密性流体动力学电化学:气密性旋转盘电极池的设计

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摘要

Rotating disk electrodes (RDEs) are widely used in electrochemical characterization to analyze the mechanisms of various electrocatalytic reactions. RDE experiments often make use of or require collection and quantification of gaseous products. The combination of rotating parts and gaseous analytes makes the design of RDE cells that allow for headspace analysis challenging due to gas leaks at the interface of the cell body and the rotator. In this manuscript we describe a new, hermetically-sealed electrochemical cell that allows for electrode rotation while simultaneously providing a gastight environment. Electrode rotation in this new cell design is controlled by magnetically coupling the working electrode to a rotating magnetic driver. Calibration of the RDE using a tachometer shows that the rotation speed of the electrode is the same as that of the magnetic driver. To validate the performance of this cell for hydrodynamic measurements, limiting currents from the reduction of a potassium ferrocyanide (K_4[Fe(CN)_6] •3H_2O) were measured and shown to compare favorably with calculated values from the Levich equation and with data obtained using more typical, non-gastight RDE cells. Faradaic efficiencies of ~95% were measured in the gas phase for oxygen evolution in alkaline media at an Inconel 625 alloy electrocatalyst during rotation at 1600 rpm. These data verify that a gastight environment is maintained even during rotation.
机译:旋转盘电极(RDE)广泛用于电化学表征,以分析各种电催化反应的机理。 RDE实验通常利用或要求收集和定量气态产物。旋转部件和气态分析物的结合使得RDE池的设计面临着顶空分析的挑战,这是由于在池体和旋转器界面的气体泄漏所致。在本手稿中,我们描述了一种新的,密封的电化学电池,该电池可允许电极旋转,同时提供气密的环境。这种新电池设计中的电极旋转是通过将工作电极磁耦合到旋转的磁性驱动器来控制的。使用转速表对RDE进行校准显示,电极的旋转速度与磁力驱动器的旋转速度相同。为了验证该电池在水动力测量中的性能,对亚铁氰化钾(K_4 [Fe(CN)_6]•3H_2O)还原产生的极限电流进行了测量,并与Levich方程的计算值和所得数据进行了比较使用更典型的非恶性RDE单元。在Inconel 625合金电催化剂中,以1600 rpm旋转时,在气相中测量碱性介质中氧气逸出的法拉第效率约为95%。这些数据证明即使在旋转过程中也能保持气密环境。

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