A Note on the Kinetics of Diffusion-mediated Reactions
Abstract
The prevalent scheme of a diffusion-mediated bimolecular reaction is an adaptation of that proposed by Briggs and Haldane for enzyme action [{\em Biochem J.\/}, 19:338--339, 1925]. The purpose of this Note is to explain, {\em by using an argument involving no mathematics\/}, why the breakup of the encounter complex cannot be described, except in special circumstances, in terms of a first-order process . Briefly, such a description neglects the occurrence of re-encounters, which lie at the heart of Noyes's theory of diffusion-mediated reactions. The relation becomes valid only when (the reaction probability per encounter) is very much smaller than unity (activation-controlled reactions), or when (the re-encounter probability) is negligible (as happens in a gas-phase reaction). References to some works (by the author and his collaborators) which propound the correct approach for finding are also supplied.
Cite
@article{arxiv.1411.2245,
title = {A Note on the Kinetics of Diffusion-mediated Reactions},
author = {K. Razi Naqvi},
journal= {arXiv preprint arXiv:1411.2245},
year = {2014}
}
Comments
4 pages, 1 figure