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EC-FORC: A New Cyclic Voltammetry Based Method for Examining Phase Transitions and Predicting Equilibrium

机译:EC-FORC:一种基于循环伏安法的检查方法,用于检查相变,预测平衡

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We propose a new, cyclic-voltammetry based experimental technique that can not only differentiate between discontinuous and continuous phase transitions in an adsorbate layer, but also quite accurately recover equilibrium behavior from dynamic analysis of systems with a continuous phase transition. The Electrochemical first-order reversal curve (EC-FORC) diagram for a discontinuous phase transition (nucleation and growth), such as occurs in underpotential deposition, is characterized by a negative region, while such a region does not exist for a continuous phase transition, such as occurs in the electrosorption of Br on Ag(100). Moreover, for systems with a continuous phase transition, the minima of the individual EC-FORCs trace the equilibrium curve, even at very high scan rates. Since obtaining experimental data for the EC-FORC method would require only a simple reprogramming of the potentiostat used in conventional cyclic-voltammetry experiments, we believe that this method has significant potential for easy, rapid, in-situ analysis of systems undergoing electrochemical deposition.
机译:我们提出了一种新的基于循环伏安法的实验技术,其不仅可以区分吸附层中的不连续和连续的相变,而且还可以从具有连续相转变的系统的动态分析中精确地回收平衡行为。用于不连续相变(核切割和生长)的电化学一阶反转曲线(EC-FORC)图,例如在轴向沉积中发生,其特征在于负区域,而这种区域不存在连续相位过渡,例如发生在Br的电吸收(100)的电吸收中。此外,对于具有连续相变的系统,即使在非常高的扫描速率下,单个EC-Forcs的最小值也追踪平衡曲线。由于获得EC-Forc方法的实验数据,因此只需要简单地重新编程常规循环伏安法实验中使用的恒电位器,因此我们认为该方法具有显着的潜力,可容易,快速,原位分析电化学沉积的系统。

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