Rodgers Patrick J, Amemiya Shigeru
Department of Chemistry, University of Pittsburgh, 219 Parkman Avenue, Pittsburgh, Pennsylvania 15260, USA.
Anal Chem. 2007 Dec 15;79(24):9276-85. doi: 10.1021/ac0711642. Epub 2007 Nov 16.
Cyclic voltammetry at micropipet electrodes is applied to the kinetic study of ion transfer at liquid/liquid interfaces. Simple and facilitated transfer of an ion that is initially present outside a tapered pipet was simulated by the finite element method, enabling complete analysis of the resulting transient cyclic voltammogram (CV) with a sigmoidal forward wave followed by a peak-shaped reverse wave. Without serious effects of uncompensated ohmic resistance and capacitive current, more parameters can be determined from a transient CV than from the steady-state counterpart obtained with a smaller pipet or at a slower scan rate. A single transient CV under kinetic limitation gives all parameters in a Butler-Volmer-type model, i.e., the formal potential, the transfer coefficient, the standard ion-transfer rate constant, k(0), and the charge of a transferring ion as well as its diffusion coefficients in both phases. Advantages of the transient approach are demonstrated experimentally for reversible, quasi-reversible and irreversible cases. With a multistep transfer mechanism, an irreversible transient CV of facilitated protamine transfer gives an apparent k(0) value of 3.5 x 10(-5) cm/s, which is the smallest k(0) value reported so far. With the largest reliable k(0) value of approximately 1 cm/s reported in the literature, an intrinsic rate of the interfacial ion transfer varies by at least 5 orders of magnitude.
微吸管电极循环伏安法被应用于液/液界面离子转移的动力学研究。通过有限元方法模拟了最初存在于锥形吸管外部的离子的简单和促进转移,从而能够对产生的瞬态循环伏安图(CV)进行完整分析,该图具有一个S形正向波,随后是一个峰形反向波。在没有未补偿欧姆电阻和电容电流严重影响的情况下,与使用较小吸管或较慢扫描速率获得的稳态CV相比,可以从瞬态CV中确定更多参数。在动力学限制下的单个瞬态CV给出了Butler-Volmer型模型中的所有参数,即形式电位、转移系数、标准离子转移速率常数k(0)、转移离子的电荷及其在两相中的扩散系数。对于可逆、准可逆和不可逆情况,实验证明了瞬态方法的优势。对于促进的鱼精蛋白转移的不可逆多步转移机制,不可逆瞬态CV给出的表观k(0)值为3.5×10^(-5) cm/s,这是迄今为止报道的最小k(0)值。根据文献中报道的约1 cm/s的最大可靠k(0)值,界面离子转移的本征速率至少变化5个数量级。