English

Breakdown of Kinetic Compensation Effect in Physical Desorption

Statistical Mechanics 2018-10-03 v4 Materials Science

Abstract

The kinetic compensation effect (KCE), observed in many fields of science, is the systematic variation in the apparent magnitudes of the Arrhenius parameters EaE_a, the energy of activation, and ν\nu, the preexponential factor, as a response to perturbations. If, in a series of closely related activated processes, these parameters exhibit a strong linear correlation, it is expected that an isokinetic relation will occur, then the rates kk become the same at a common compensation temperature TcT_c. The reality of these two phenomena continues to be debated as they have not been explicitly demonstrated and their physical origins remain poorly understood. Using kinetic Monte Carlo simulations on a model interface, we explore how site and adsorbate interactions influence the Arrhenius parameters during a typical desorption process. We find that their transient variations result in a net partial compensation, due to the variations in the prefactor not being large enough to completely offset those in EaE_a, both in plots that exhibit a high degree of linearity and in curved non-Arrhenius plots. In addition, the observed isokinetic relation arises due to a transition to a non-interacting regime, and not due to compensation between EaE_a and lnν\ln{\nu}. We expect our results to provide a deeper insight into the microscopic events that originate compensation effects and isokinetic relations in our system, and in other fields where these effects have been reported.

Keywords

Cite

@article{arxiv.1503.06362,
  title  = {Breakdown of Kinetic Compensation Effect in Physical Desorption},
  author = {Nayeli Zuniga-Hansen and Leonardo E. Silbert and M. Mercedes Calbi},
  journal= {arXiv preprint arXiv:1503.06362},
  year   = {2018}
}

Comments

11 pages, 17 figures, 3 tables

R2 v1 2026-06-22T08:58:47.872Z