Stochastic approach to chemical kinetics
- 1 November 1967
- journal article
- Published by Cambridge University Press (CUP) in Journal of Applied Probability
- Vol. 4 (3), 413-478
- https://doi.org/10.2307/3212214
Abstract
In this article we shall present a summary of the various stochastic approaches and applications to chemical reaction kinetics, but before discussing these we first briefly introduce the basic ideas and definitions of classical or deterministic chemical kinetics. One of the basic questions to which chemists address themselves is the rate of chemical reactions, or in other words, how long it takes for a chemical reaction to attain completion, or equilibrium. Apparently the first significant quantitative investigation was made in 1850 by L. Wilhelmy [93]. He studied the inversion of sucrose (cane sugar) in aqueous solutions of acids, whose reaction is He foundempiricallythat the rate of decrease of concentration of sucrose was simply proportional to the concentration remaining unconverted, i.e., ifS(t) is the concentration of sucrose, then The constant of proportionality is called therate constantof the reaction. IfSois the initial concentration of sucrose, then Since then an enormous number of reactions has been studied and the field of chemical kinetics is now one of the largest areas of chemical research. The importance of the field lies in the fact that it yields concise expressions for the time dependence of reactions, predicts yields, optimum economic conditions, and gives one much insight into the actual molecular processes involved. The detailed molecular picture of a reaction process is called themechanismof the reaction.Keywords
This publication has 108 references indexed in Scilit:
- Studies in irreversible thermodynamics IV. diagrammatic representation of steady state fluxes for unimolecular systemsJournal of Theoretical Biology, 1966
- Studies in irreversible thermodynamics III. models for steady state and active transport across membranesJournal of Theoretical Biology, 1966
- The kinetics of multicenter macromolecule growth along a templateJournal of Theoretical Biology, 1965
- Kinetics of Diffusion-Controlled Processes in Liquids. Theoretical Consideration of Luminescent Systems: Quenching and Excitation Transfer in CollisionThe Journal of Chemical Physics, 1964
- Weight-Average and z-Average Degree of Polymerization for Polymers Undergoing Random ScissionThe Journal of Chemical Physics, 1963
- Reaction Kinetics of a Long-Chain Molecule. II. Arends' SolutionThe Journal of Chemical Physics, 1963
- General Solution to the Problem of the Effect of Neighboring Groups in Polymer ReactionThe Journal of Chemical Physics, 1963
- Kinetics of High-Polymer Reactions: Effects of Neighboring GroupsThe Journal of Chemical Physics, 1963
- Mean First Passage Time for a Random Walker and Its Application to Chemical KineticsThe Journal of Chemical Physics, 1958
- Studies in Nonequilibrium Rate Processes. III. The Vibrational Relaxation of a System of Anharmonic OscillatorsThe Journal of Chemical Physics, 1958