This work is devoted to deriving a more accurate reaction–diffusion equation for an A/B binary system by summing over microscopic trajectories. By noting that an originally simple physical trajectory might be much more complicated when the reactions are incorporated, we introduce diffusion–reaction–diffusion (DRD) diagrams, similar to the Feynman diagram, to derive the equation. It is found that when there is no intermolecular interaction between A and B, the newly derived equation is reduced to the classical reaction–diffusion equation. However, when there is intermolecular interaction, the newly derived equation shows that there are coupling terms between the diffusion and the reaction, which will be manifested on the mesoscopic scale. Th...
Step-growth polymerization of rodlike molecules is qualitatively different from flexible molecules, ...
A formal mathematical description of diffusion-controlled bimolecular reactions is presented. The th...
Step-growth polymerization of rodlike molecules is qualitatively different from flexible molecules, ...
This work is devoted to deriving a more accurate reaction–diffusion equation for an A/B binary syste...
The chemical diffusion master equation (CDME) describes the probabilistic dynamics of reaction–diffu...
The reaction–diffusion master equation (RDME) is a model for chemical systems in which both noise in...
We show how the ring-polymer molecular dynamics method can be adapted to calculate approximate Kubo-...
We introduce a new method of solution for the Fredholm integral equations of the second kind. The me...
A reaction-diffusion system of polymers undergoing interchange reactions is studied. The equation th...
A reaction-diffusion system of polymers undergoing interchange reactions is studied. The equation th...
In the quantum chemical approach, chemical reaction mechanisms are investigated based on a potential...
A microscopic theory for reaction-difusion (R-D) processes is developed from Einstein's master equat...
The solvent effects for a Claisen rearrangement and a Diels-Alder reaction are investigated. Electro...
We present a new method for the numerical calculation of canonical reaction rate constants in comple...
The kinetics of bimolecular reactions in solution depends, among other factors, on intermolecular fo...
Step-growth polymerization of rodlike molecules is qualitatively different from flexible molecules, ...
A formal mathematical description of diffusion-controlled bimolecular reactions is presented. The th...
Step-growth polymerization of rodlike molecules is qualitatively different from flexible molecules, ...
This work is devoted to deriving a more accurate reaction–diffusion equation for an A/B binary syste...
The chemical diffusion master equation (CDME) describes the probabilistic dynamics of reaction–diffu...
The reaction–diffusion master equation (RDME) is a model for chemical systems in which both noise in...
We show how the ring-polymer molecular dynamics method can be adapted to calculate approximate Kubo-...
We introduce a new method of solution for the Fredholm integral equations of the second kind. The me...
A reaction-diffusion system of polymers undergoing interchange reactions is studied. The equation th...
A reaction-diffusion system of polymers undergoing interchange reactions is studied. The equation th...
In the quantum chemical approach, chemical reaction mechanisms are investigated based on a potential...
A microscopic theory for reaction-difusion (R-D) processes is developed from Einstein's master equat...
The solvent effects for a Claisen rearrangement and a Diels-Alder reaction are investigated. Electro...
We present a new method for the numerical calculation of canonical reaction rate constants in comple...
The kinetics of bimolecular reactions in solution depends, among other factors, on intermolecular fo...
Step-growth polymerization of rodlike molecules is qualitatively different from flexible molecules, ...
A formal mathematical description of diffusion-controlled bimolecular reactions is presented. The th...
Step-growth polymerization of rodlike molecules is qualitatively different from flexible molecules, ...