Literature DB >> 17228970

Morphology of a highly asymmetric double crystallizable poly(epsilon-caprolactone-b-ethylene oxide) block copolymer.

Liangbin Li1, Fenghua Meng, Zhiyuan Zhong, Dmytro Byelov, Wim H de Jeu, Jan Feijen.   

Abstract

The morphology of a highly asymmetric double crystallizable poly(epsilon-caprolactone-b-ethylene oxide) (PCL-b-PEO) block copolymer has been studied with in situ simultaneously small and wide-angle x-ray scattering as well as atomic force microscopy. The molecular masses Mn of the PCL and PEO blocks are 24,000 and 5800, respectively. X-ray scattering and rheological measurements indicate that no microphase separation occurs in the melt. Decreasing the temperature simultaneously triggers off a crystallization of PCL and microphase separation between the PCL and PEO blocks. Coupling and competition between microphase separation and crystallization results in a morphology of PEO spheres surrounded by PCL partially crystallized in lamella. Further decreasing temperature induces the crystallization of PEO spheres, which have a preferred orientation due to the confinements from hard PCL crystalline lamella and from soft amorphous PCL segments in different sides. The final morphology of this highly asymmetric block copolymer is similar to the granular morphology reported for syndiotactic polypropylene and other (co-) polymers. This implies a similar underlying mechanism of coupling and competition of various phase transitions, which is worth further exploration.

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Year:  2007        PMID: 17228970     DOI: 10.1063/1.2405357

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  2 in total

1.  Sequential Crystallization and Multicrystalline Morphology in PE-b-PEO-b-PCL-b-PLLA Tetrablock Quarterpolymers.

Authors:  Eider Matxinandiarena; Agurtzane Múgica; Agnieszka Tercjak; Viko Ladelta; George Zapsas; Nikos Hadjichristidis; Dario Cavallo; Araceli Flores; Alejandro J Müller
Journal:  Macromolecules       Date:  2021-07-23       Impact factor: 6.057

2.  Design and Development of D‒α‒Tocopheryl Polyethylene Glycol Succinate‒block‒Poly(ε-Caprolactone) (TPGS-b-PCL) Nanocarriers for Solubilization and Controlled Release of Paclitaxel.

Authors:  Osman Yusuf; Raisuddin Ali; Abdullah H Alomrani; Aws Alshamsan; Abdullah K Alshememry; Abdulaziz M Almalik; Afsaneh Lavasanifar; Ziyad Binkhathlan
Journal:  Molecules       Date:  2021-05-04       Impact factor: 4.411

  2 in total

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