Royea William J, Hamann Thomas W, Brunschwig Bruce S, Lewis Nathan S
Beckman Institute and Kavli Nanoscience Institute, Division of Chemistry and Chemical Engineering, 210 Noyes Laboratory, 127-72, California Institute of Technology, Pasadena, 91125, USA.
J Phys Chem B. 2006 Oct 5;110(39):19433-42. doi: 10.1021/jp062141e.
The Fermi golden rule formalism has been used to derive the rate constant for interfacial electron transfer from a semimetallic electrode, such as highly ordered pyrolytic graphite (HOPG), to a redox couple in solution. A simple expression is presented that semiquantitatively relates the electron-transfer rate constant at a semimetallic electrode to that at a metallic electrode. The approach allows for the estimation of the value of the rate constant for interfacial charge transfer to nonadsorbing outer-sphere redox species at semimetallic electrodes. Rate constants for interfacial electron transfer for a variety of one-electron redox couples at semimetallic electrodes have been calculated relative to the rate constant of the ferrocenium/ferrocene redox couple at a gold electrode. Good agreement is found, in general, between the calculated and observed rate constants.
费米黄金规则形式体系已被用于推导从半金属电极(如高度有序热解石墨(HOPG))到溶液中氧化还原对的界面电子转移速率常数。给出了一个简单的表达式,该表达式将半金属电极上的电子转移速率常数与金属电极上的电子转移速率常数进行了半定量关联。该方法可以估算半金属电极上向非吸附性外层氧化还原物种的界面电荷转移速率常数的值。相对于金电极上二茂铁鎓/二茂铁氧化还原对的速率常数,已计算出半金属电极上各种单电子氧化还原对的界面电子转移速率常数。一般来说,计算得到的速率常数与观测到的速率常数之间吻合良好。