Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation Model

The bond fluctuation model was employed to characterize the approach to the mesophase separation transition of pure linear AB copolymers and symmetric miktoarms, also called Janus, star polymers, A<sub>f</sub><sub>/2</sub>B<sub>f/</sub><sub>2 </sub>, w...

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Main Author: Juan J. J. Freire
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/13/14/2377
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spelling doaj-1ed122bc230f4bcab193068d1584c4632021-07-23T14:02:47ZengMDPI AGPolymers2073-43602021-07-01132377237710.3390/polym13142377Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation ModelJuan J. J. Freire0Departamento de Ciencias y Técnicas Fisicoquímicas, Facultad de Ciencias, Avenida de Esparta s/n, 28232 Las Rozas-Madrid, SpainThe bond fluctuation model was employed to characterize the approach to the mesophase separation transition of pure linear AB copolymers and symmetric miktoarms, also called Janus, star polymers, A<sub>f</sub><sub>/2</sub>B<sub>f/</sub><sub>2 </sub>, where f = 6 or 12 is the total number of arms, in a common good solvent. We consider a concentration sufficiently high to mimic the melting behavior and also a lower concentration. The segregation between A and B units is represented by a repulsive interaction parameter, . Different total numbers of units are also considered. Results for different properties, such as the molecular size, the asphericity and orientational correlation of blocks, or arms, of different compositions are obtained as a function of the segregation parameter. We also calculate scattering structure factors. The initial effect of segregation on the scattering with opposite contrast factors between the A and B blocks can be explained with a common description based on the random phase approximation for both the linear copolymers and the f = 6 miktoarms, once the numerical form factors of the different molecules in their particular systems are considered. However, the results for f = 12 clearly deviate from this description probably due to some degree of ordering in the position of highly armed molecules.https://www.mdpi.com/2073-4360/13/14/2377diblock copolymersmiktoarm polymersJanus star polymersMonte Carlo simulationsbond fluctuation model
collection DOAJ
language English
format Article
sources DOAJ
author Juan J. J. Freire
spellingShingle Juan J. J. Freire
Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation Model
Polymers
diblock copolymers
miktoarm polymers
Janus star polymers
Monte Carlo simulations
bond fluctuation model
author_facet Juan J. J. Freire
author_sort Juan J. J. Freire
title Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation Model
title_short Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation Model
title_full Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation Model
title_fullStr Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation Model
title_full_unstemmed Study of Segregation in Non-Dilute Solutions of Linear Diblock Copolymers and Symmetric Miktoarm (or Janus Star) Polymers Using Monte Carlo Simulations with the Bond Fluctuation Model
title_sort study of segregation in non-dilute solutions of linear diblock copolymers and symmetric miktoarm (or janus star) polymers using monte carlo simulations with the bond fluctuation model
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2021-07-01
description The bond fluctuation model was employed to characterize the approach to the mesophase separation transition of pure linear AB copolymers and symmetric miktoarms, also called Janus, star polymers, A<sub>f</sub><sub>/2</sub>B<sub>f/</sub><sub>2 </sub>, where f = 6 or 12 is the total number of arms, in a common good solvent. We consider a concentration sufficiently high to mimic the melting behavior and also a lower concentration. The segregation between A and B units is represented by a repulsive interaction parameter, . Different total numbers of units are also considered. Results for different properties, such as the molecular size, the asphericity and orientational correlation of blocks, or arms, of different compositions are obtained as a function of the segregation parameter. We also calculate scattering structure factors. The initial effect of segregation on the scattering with opposite contrast factors between the A and B blocks can be explained with a common description based on the random phase approximation for both the linear copolymers and the f = 6 miktoarms, once the numerical form factors of the different molecules in their particular systems are considered. However, the results for f = 12 clearly deviate from this description probably due to some degree of ordering in the position of highly armed molecules.
topic diblock copolymers
miktoarm polymers
Janus star polymers
Monte Carlo simulations
bond fluctuation model
url https://www.mdpi.com/2073-4360/13/14/2377
work_keys_str_mv AT juanjjfreire studyofsegregationinnondilutesolutionsoflineardiblockcopolymersandsymmetricmiktoarmorjanusstarpolymersusingmontecarlosimulationswiththebondfluctuationmodel
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