We describe a new rationale to kinetic modelling in which adjustable parameters are avoided through the use of quantum chemistry. This new approach reverses the standard modelling approach in which, having first assumed a kinetic model, it is then fitted to the experimentally determined values of the macroscopic properties (rates, compositions, molecular weight distributions, and so forth) so as to estimate the rate coefficients of the individual reactions. Instead, one still assumes a reaction scheme, but then calculates the rates of the individual reactions using high-level ab initio calculations, and in this way a kinetic model is built that can be used to predict the macroscopic properties of the process from first principles. These can...
Careful simulations of conversion vs. time plots and full molecular weight distributions have been p...
This article highlights some of the recent contributions that computational quantum chemistry has ma...
Ab-initio-calculated rate coefficients for addition and fragmentation in rever-sible-addition fragmen...
We describe a new rationale to kinetic modelling in which adjustable parameters are avoided through ...
We describe a new rationale to kinetic modelling in which adjustable parameters are avoided through ...
Throughout the last 25 years, computational chemistry based on quantum mechanics has been applied to...
We present the first ab initio simulation of a reversible addition fragmentation chain transfer (RAF...
We present the first ab initio simulation of a reversible addition fragmentation chain transfer (RAF...
In recent decades, quantum chemical calculations (QCC) have increased in accuracy, not only providin...
In recent decades, quantum chemical calculations (QCC) have increased in accuracy, not only providin...
The kinetics of radical polymerization have been systematically studied for nearly a century and in ...
ABSTRACT: In this work, based on experimental observations and exact theoretical predictions, the ki...
The importance of the development of kinetic modeling tools to mechanistically understand and design...
The importance of the development of kinetic modeling tools to mechanistically understand and design...
The stochastic nature of polymerization processes often leads to a mixture of chain populations with...
Careful simulations of conversion vs. time plots and full molecular weight distributions have been p...
This article highlights some of the recent contributions that computational quantum chemistry has ma...
Ab-initio-calculated rate coefficients for addition and fragmentation in rever-sible-addition fragmen...
We describe a new rationale to kinetic modelling in which adjustable parameters are avoided through ...
We describe a new rationale to kinetic modelling in which adjustable parameters are avoided through ...
Throughout the last 25 years, computational chemistry based on quantum mechanics has been applied to...
We present the first ab initio simulation of a reversible addition fragmentation chain transfer (RAF...
We present the first ab initio simulation of a reversible addition fragmentation chain transfer (RAF...
In recent decades, quantum chemical calculations (QCC) have increased in accuracy, not only providin...
In recent decades, quantum chemical calculations (QCC) have increased in accuracy, not only providin...
The kinetics of radical polymerization have been systematically studied for nearly a century and in ...
ABSTRACT: In this work, based on experimental observations and exact theoretical predictions, the ki...
The importance of the development of kinetic modeling tools to mechanistically understand and design...
The importance of the development of kinetic modeling tools to mechanistically understand and design...
The stochastic nature of polymerization processes often leads to a mixture of chain populations with...
Careful simulations of conversion vs. time plots and full molecular weight distributions have been p...
This article highlights some of the recent contributions that computational quantum chemistry has ma...
Ab-initio-calculated rate coefficients for addition and fragmentation in rever-sible-addition fragmen...