Brownian dynamics simulations of diffusion controlled reactions with finite reactivity
- 8 August 1997
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 107 (6) , 1915-1921
- https://doi.org/10.1063/1.474542
Abstract
A new Brownian dynamics simulation technique is presented for the calculation of the effective rate constant for diffusion controlled reactions with a finite intrinsic reactivity. The technique is based on the calculation of the recollision probability of a molecule with a reactive site using a large number of Brownian trajectories, when the probability of reaction upon collision with the reactive site (φf) is less than unity. The technique is a modification of the earlier work of Northrup et al. [J. Chem. Phys. 80, 1517 (1984)], and is applied to the case of a uniformly reactive target sphere and a target sphere with axially symmetric reactive patches. A theoretical analysis is presented to relate φf to the intrinsic surface reaction rate constant (k). Computational results for the uniformly reactive sphere are in excellent agreement with theory, and those for the sphere with patches are in very good agreement with the results obtained using a different computational technique [Allison et al., J. Phys. Chem. 94, 7133 (1990)]. The proposed method requires the computation of the recollision probability to a high accuracy; however, this does not result in computational times greater than those of Allison et al. [J. Phys. Chem. 94, 7133 (1990)]. The new method has the advantage that the results of the Brownian dynamics simulation are independent of k and can subsequently be used to calculate the effective rate constant for any given value of k.Keywords
This publication has 27 references indexed in Scilit:
- Diffusion-limited polymerization of rigid rodlike molecules: Semidilute solutionsThe Journal of Chemical Physics, 1993
- Shear flow induced orientation development during homogeneous solution polymerization of rigid rodlike moleculesMacromolecules, 1993
- Simulation of electron-transfer self-exchange in cytochromes c and b5Journal of the American Chemical Society, 1993
- Enhancement of polymerization rates for rigid rod-like molecules by shearingNature, 1992
- Reduction of horse heart ferricytochrome c by bovine liver ferrocytochrome b5. Experimental and theoretical analysisBiochemistry, 1991
- Brownian dynamics simulations of diffusion-influenced reactions: inclusion of intrinsic reactivity and gatingThe Journal of Physical Chemistry, 1990
- Brownian dynamics simulation of diffusion to irregular bodiesThe Journal of Physical Chemistry, 1987
- Optimization of Brownian dynamics methods for diffusion-influenced rate constant calculationsThe Journal of Chemical Physics, 1986
- Brownian dynamics simulation of diffusion-influenced bimolecular reactionsThe Journal of Chemical Physics, 1984
- Polymerization kinetics of rigid rodlike molecules: polycondensation of poly([benzo(1,2-d:5,4-d')bisoxazole-2,6-diyl]-1,4-phenylene)Macromolecules, 1981