The foundations of electrochemistry are rooted in the works of Faraday, Helmholtz, and Nernst, who laid the groundwork for our understanding of electrode reactions and electrochemical thermodynamics. The Nernst equation, which relates the electrode potential of a cell to the concentrations of reactants and products, remains a cornerstone of electrochemistry. However, modern electrochemistry has expanded significantly beyond these classical concepts, incorporating advances in statistical mechanics, quantum chemistry, and computational modeling.
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