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Determining the thermodynamic electrode potential in the presence of a mixed potential using EQCM technique

机译:使用EQCM技术在存在混合电势的情况下确定热力学电极电势

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We give the theory explaining how to use Electrochemical Quartz Crystal Microbalance (EQCM) to determine the thermodynamic equilibrium electrode potential in a system where the open circuit potential is a mixed potential. The approach is applicable to electrodes of the first or the second kind in the presence of one or more soluble redox couples, at least one of which is irreversible. The key insight to be gained is that if the mass of an electrode of the first or the second kind does not change, its electrode potential is the thermodynamic equilibrium potential. This is true regardless of any other redox processes involving only soluble species that may be occurring at the electrode/solution interface. The model system used to test and confirm the theory was an electrode of the first kind, NiH_(x,solid)/Ni(II) undergoing active corrosion caused by hydrogen peroxide. The electrochemical quartz crystal microbalance method can be applied in fundamental and applied studies, e.g., of electroless deposition and corrosion systems containing multiple redox systems.
机译:我们给出理论解释,说明如何使用电化学石英晶体微天平(EQCM)确定开路电势为混合电势的系统中的热力学平衡电极电势。该方法适用于存在一个或多个可溶氧化还原对的第一或第二种电极,其中至少一个是不可逆的。要获得的关键见解是,如果第一或第二种电极的质量不变,则其电极电势就是热力学平衡电势。不管其他任何仅涉及在电极/溶液界面可能发生的可溶性物种的氧化还原过程,都是如此。用于测试和证实该理论的模型系统是第一种电极,NiH_(x,solid)/ Ni(II)受到过氧化氢引起的主动腐蚀。电化学石英晶体微天平法可用于基础和应用研究,例如,包含多个氧化还原系统的化学沉积和腐蚀系统。

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