A detailed kinetic model is developed for the polymerization of poly(phenylene oxide) (PPO). The Box complex technique is used to obtain the best-fit values of the parameters of the model (rate constants), using experimental data on the variation of the number-average chain length (μn) with time for one set of conditions. A sensitivity study helps to simplify this kinetic scheme. The Box complex method gives the optimal values of the four rate constants associated with this simplified model. The model is able to explain the two interesting features of this polymerization, namely: (i) a slow increase in μn with time during the initial period, followed by a sharp increase for a short duration; and (ii) a decrease in the polydispersi...
The article describes an algorithm for modeling the isoprene polymerization process based on the Mon...
A theoretical model is developed for the effect of segmental diffusion on reversible step growth pol...
In this work, a well-known single-particle model (the multigrain model) is applied to simulate size ...
A detailed kinetic model is developed for the polymerization of poly(phenylene oxide) (PPO). The Box...
A simple model is presented for the polymerization of poly(phenylene oxide) (PPO) in the presence of...
Numerical integration has been used as a means of simulating the title polymerization so that the va...
A general kinetic framework to study epoxy polymerization is developed. Best-fit values of five rate...
A general kinetic framework to study epoxy polymerization is developed. Best-fit values of five rate...
Many acrylic and vinylic monomers are often polymerized by a free radical chain addition mechanism. ...
The kinetics of solution polymerization to synthesize poly(p-phenylene terephthalamide), a rodlike p...
The field of what is now referred to as polymer reaction engineering started in the early 1930s with...
The kinetics of solution polymerization to synthesize poly(p-phenylene terephthalamide), a rodlike p...
A suite of simulation strategies has been developed that is well suited to the simulation of free-ra...
The second stage of a batch polyethylene terephthalate (PET) reactor with a kinetic scheme consistin...
Mathematical models of reactors for the polymerization of methylmethacrylate (MMA) and propylene hav...
The article describes an algorithm for modeling the isoprene polymerization process based on the Mon...
A theoretical model is developed for the effect of segmental diffusion on reversible step growth pol...
In this work, a well-known single-particle model (the multigrain model) is applied to simulate size ...
A detailed kinetic model is developed for the polymerization of poly(phenylene oxide) (PPO). The Box...
A simple model is presented for the polymerization of poly(phenylene oxide) (PPO) in the presence of...
Numerical integration has been used as a means of simulating the title polymerization so that the va...
A general kinetic framework to study epoxy polymerization is developed. Best-fit values of five rate...
A general kinetic framework to study epoxy polymerization is developed. Best-fit values of five rate...
Many acrylic and vinylic monomers are often polymerized by a free radical chain addition mechanism. ...
The kinetics of solution polymerization to synthesize poly(p-phenylene terephthalamide), a rodlike p...
The field of what is now referred to as polymer reaction engineering started in the early 1930s with...
The kinetics of solution polymerization to synthesize poly(p-phenylene terephthalamide), a rodlike p...
A suite of simulation strategies has been developed that is well suited to the simulation of free-ra...
The second stage of a batch polyethylene terephthalate (PET) reactor with a kinetic scheme consistin...
Mathematical models of reactors for the polymerization of methylmethacrylate (MMA) and propylene hav...
The article describes an algorithm for modeling the isoprene polymerization process based on the Mon...
A theoretical model is developed for the effect of segmental diffusion on reversible step growth pol...
In this work, a well-known single-particle model (the multigrain model) is applied to simulate size ...