It is widely thought that confinement of an amorphous polymer alters the chain mobility, which affects the temperature and intensity of the glass transition. The present study sought to determine whether the same effects extend to semicrystalline polymers. Confinement was achieved by forced assembly of hundreds of alternating layers of poly(ethylene oxide) (PEO) with either poly(ethylene-co-acrylic acid) or polystyrene. The confinement gradually reduced the intensity of the PEO beta-relaxation as the layer thickness decreased from the microscale to the nanoscale. By considering the changes in crystalline morphology that accompanied layer confinement, it was possible to completely account for the reduction in relaxation intensity using standard mechanical models. The viscoelastic behavior of the amorphous phase was satisfactorily represented by a modified standard linear solid (SLS). The amorphous and crystalline contributions were combined using a combination of parallel and series coupling in accordance with the Takayanagi model. No adjustment in the viscoelastic parameters of the modified SLS was required, indicating that there was no significant change in amorphous chain dynamics even in layers as thin as 45 nm. (C) 2010 Elsevier Ltd. All rights reserved.
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CSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
DIPC, San Sebastian 20018, SpainCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Barroso-Bujans, Fabienne
Palomino, Pablo
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Univ Complutense, Fac Ciencias Quim, Dept Quim Fis 1, E-28040 Madrid, SpainCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Palomino, Pablo
Cerveny, Silvina
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CSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
DIPC, San Sebastian 20018, SpainCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Cerveny, Silvina
Fernandez-Alonso, Felix
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Rutherford Appleton Lab, ISIS Facil, Didcot OX11 0QX, Oxon, England
UCL, Dept Phys & Astron, London WC1E 6BT, EnglandCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Fernandez-Alonso, Felix
Rudic, Svemir
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Rutherford Appleton Lab, ISIS Facil, Didcot OX11 0QX, Oxon, EnglandCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Rudic, Svemir
Alegria, Angel
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CSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Univ Pais Vasco UPV EHU, Dept Fis Mat, San Sebastian 20080, SpainCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Alegria, Angel
Colmenero, Juan
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CSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
DIPC, San Sebastian 20018, Spain
Univ Pais Vasco UPV EHU, Dept Fis Mat, San Sebastian 20080, SpainCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
Colmenero, Juan
Enciso, Eduardo
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Univ Complutense, Fac Ciencias Quim, Dept Quim Fis 1, E-28040 Madrid, SpainCSIC UPV EHU, Ctr Phys Mat, San Sebastian 20018, Spain
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UPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, SpainUPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain
Barroso-Bujans, Fabienne
Fernandez-Alonso, Felix
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Rutherford Appleton Lab, ISIS Facil, Chilton OX11 0QX, Didcot, England
UCL, Dept Phys & Astron, London WC1E 6BT, EnglandUPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain
Fernandez-Alonso, Felix
Cerveny, Silvina
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UPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, SpainUPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain
Cerveny, Silvina
Arrese-Igor, Silvia
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UPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, SpainUPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain
Arrese-Igor, Silvia
Alegria, Angel
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UPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain
Univ Pais Vasco UPV EHU, Dept Fis Mat, San Sebastian 20080, SpainUPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain
Alegria, Angel
Colmenero, Juan
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UPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain
Univ Pais Vasco UPV EHU, Dept Fis Mat, San Sebastian 20080, Spain
Donostia Int Phys Ctr, San Sebastian 20018, SpainUPV, EHU, CSIC, Ctr Fis Mat Phys Ctr, San Sebastian 20018, Spain