Copolymers of n-butyl acrylate/methyl methacrylate (BA/MMA) with certain compositions were recently proposed as self-healing materials due to "key-and-lock"interchain interactions of alternating sequences. This inspired us to analyze by numerical simulations the formation of heterosequences in BA/MMA copolymers prepared by atom transfer radical polymerization (ATRP). Stochastic Monte Carlo and deterministic simulations using numerical integration of differential equations showed that the highest contribution of alternating sequences is present in a statistical copolymer with 1:1 BA/MMA composition. However, batch ATRP of a 1:1 BA/MMA mixture generates a gradient copolymer with a diminished fraction of alternating sequences. Therefore, a met...
While Kinetic Monte Carlo (KMC) techniques provide a powerful means to model polymer microstructure,...
Reversible addition fragmentation chain transfer (RAFT) mediated and conventional copolymerizations ...
Reversible addition fragmentation chain transfer (RAFT) mediated and conventional copolymerizations ...
A high-performance Monte Carlo simulation, which simultaneously takes diffusion-controlled and chain...
This work explores the application and control of heterogeneity within ATRP. The term “heterogeneity...
The relevance of penultimate monomer unit (PMU) effects and the selection of the correct initiator s...
ABSTRACT: The reactivity ratios of n-butyl acrylate (nBuA) with methyl methacrylate (MMA) and ö-meth...
Previous theories describing the phase behavior of copolymer blends have ignored the sequence distri...
Based on kinetic Monte Carlo simulations of the monomer sequences of a representative number of copo...
A recently developed general kinetic approach, based on population balances in terms of generating f...
Based on kinetic Monte Carlo simulations of the monomer sequences of a representative number of copo...
The linear gradient quality and the control, over chain, length. and end. group functionality in the...
Predicting chain microstructure became an important task for polymer scientists. Polydisperse nature...
The control of the overall composition and the sequence distribution in copolymers with both linear ...
An innovative model-based design strategy to synthesize well-defined sequence-controlled polymers is...
While Kinetic Monte Carlo (KMC) techniques provide a powerful means to model polymer microstructure,...
Reversible addition fragmentation chain transfer (RAFT) mediated and conventional copolymerizations ...
Reversible addition fragmentation chain transfer (RAFT) mediated and conventional copolymerizations ...
A high-performance Monte Carlo simulation, which simultaneously takes diffusion-controlled and chain...
This work explores the application and control of heterogeneity within ATRP. The term “heterogeneity...
The relevance of penultimate monomer unit (PMU) effects and the selection of the correct initiator s...
ABSTRACT: The reactivity ratios of n-butyl acrylate (nBuA) with methyl methacrylate (MMA) and ö-meth...
Previous theories describing the phase behavior of copolymer blends have ignored the sequence distri...
Based on kinetic Monte Carlo simulations of the monomer sequences of a representative number of copo...
A recently developed general kinetic approach, based on population balances in terms of generating f...
Based on kinetic Monte Carlo simulations of the monomer sequences of a representative number of copo...
The linear gradient quality and the control, over chain, length. and end. group functionality in the...
Predicting chain microstructure became an important task for polymer scientists. Polydisperse nature...
The control of the overall composition and the sequence distribution in copolymers with both linear ...
An innovative model-based design strategy to synthesize well-defined sequence-controlled polymers is...
While Kinetic Monte Carlo (KMC) techniques provide a powerful means to model polymer microstructure,...
Reversible addition fragmentation chain transfer (RAFT) mediated and conventional copolymerizations ...
Reversible addition fragmentation chain transfer (RAFT) mediated and conventional copolymerizations ...