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Ultraslow dynamics in asymmetric block copolymers with nanospherical domains

Low shear rate and low frequency measurements focused on the extremely slow dynamics of a three-dimensional body-centered cubic (BCC) structure of an asymmetric block copolymer under nanophase-separated conditions. The material studied was poly(styrene-b-ethylene-co-butylene-b-styrene) swollen in a...

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Detalles Bibliográficos
Autores principales: Mandare, Prashant, Winter, H. Henning
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer-Verlag 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3776257/
https://www.ncbi.nlm.nih.gov/pubmed/24058230
http://dx.doi.org/10.1007/s00396-006-1501-z
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author Mandare, Prashant
Winter, H. Henning
author_facet Mandare, Prashant
Winter, H. Henning
author_sort Mandare, Prashant
collection PubMed
description Low shear rate and low frequency measurements focused on the extremely slow dynamics of a three-dimensional body-centered cubic (BCC) structure of an asymmetric block copolymer under nanophase-separated conditions. The material studied was poly(styrene-b-ethylene-co-butylene-b-styrene) swollen in a hydrocarbon oil selective for the midblock. Transient viscosities during start-up of shear flow at extremely low shear rates are governed by very long relaxation times and by a modulus that is nearly the same as the plateau modulus obtained from oscillatory shear experiments. Only at extremely low shear rates a zero shear viscosity could be attained. Its very high value is close to the viscosity calculated from stress relaxation experiments. The steady shear viscosity decreases by several orders of magnitude when increasing the shear rate. SAXS experiments on samples sheared even at very low rates indicated loss of the BCC order that was present in the annealed samples before shearing. The SAXS profile recorded on such a sample showed a first-order maximum followed by a broad shoulder indicating a liquid-like short-range order of PS nanospheres in the swollen EB matrix.
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spelling pubmed-37762572013-09-25 Ultraslow dynamics in asymmetric block copolymers with nanospherical domains Mandare, Prashant Winter, H. Henning Colloid Polym Sci Original Contribution Low shear rate and low frequency measurements focused on the extremely slow dynamics of a three-dimensional body-centered cubic (BCC) structure of an asymmetric block copolymer under nanophase-separated conditions. The material studied was poly(styrene-b-ethylene-co-butylene-b-styrene) swollen in a hydrocarbon oil selective for the midblock. Transient viscosities during start-up of shear flow at extremely low shear rates are governed by very long relaxation times and by a modulus that is nearly the same as the plateau modulus obtained from oscillatory shear experiments. Only at extremely low shear rates a zero shear viscosity could be attained. Its very high value is close to the viscosity calculated from stress relaxation experiments. The steady shear viscosity decreases by several orders of magnitude when increasing the shear rate. SAXS experiments on samples sheared even at very low rates indicated loss of the BCC order that was present in the annealed samples before shearing. The SAXS profile recorded on such a sample showed a first-order maximum followed by a broad shoulder indicating a liquid-like short-range order of PS nanospheres in the swollen EB matrix. Springer-Verlag 2006-06-21 2006 /pmc/articles/PMC3776257/ /pubmed/24058230 http://dx.doi.org/10.1007/s00396-006-1501-z Text en © Springer-Verlag 2006
spellingShingle Original Contribution
Mandare, Prashant
Winter, H. Henning
Ultraslow dynamics in asymmetric block copolymers with nanospherical domains
title Ultraslow dynamics in asymmetric block copolymers with nanospherical domains
title_full Ultraslow dynamics in asymmetric block copolymers with nanospherical domains
title_fullStr Ultraslow dynamics in asymmetric block copolymers with nanospherical domains
title_full_unstemmed Ultraslow dynamics in asymmetric block copolymers with nanospherical domains
title_short Ultraslow dynamics in asymmetric block copolymers with nanospherical domains
title_sort ultraslow dynamics in asymmetric block copolymers with nanospherical domains
topic Original Contribution
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3776257/
https://www.ncbi.nlm.nih.gov/pubmed/24058230
http://dx.doi.org/10.1007/s00396-006-1501-z
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