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Alternating Crystalline-Amorphous Layers in Hybrid Block Copolymers of Linear Poly(ethylene glycol) and Dendritic Poly(benzyl ether)

โœ Scribed by Xuexin Duan; Fei Yuan; Xiaojing Wen; Miao Yang; Binglin He; Wei Wang


Book ID
102482981
Publisher
John Wiley and Sons
Year
2004
Tongue
English
Weight
265 KB
Volume
205
Category
Article
ISSN
1022-1352

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โœฆ Synopsis


Abstract

Summary: In the present work, we have studied the crystalline morphology of hybrid diโ€ and triblock copolymers consisting of linear poly(ethylene glycol) (PEG) and Frรฉchetโ€type monodendrons of poly(benzyl ether). The linear blocks can crystallize to form spherulites under supercooling condition. Using atomic force microscopy and smallโ€angle Xโ€ray scattering method we found alternating crystalline and amorphous layers. The crystalline layers are formed by the PEG block, while the amorphous layers contain the miscible mixture of PEG and the monodendrons. Our analysis shows that the long period, d, of the layers scales as dโ€‰โˆโ€‰M where $M_{\rm D}$ is the molecular weight of the monodendrons. As the radius of gyration of the monodendrons R~g~, also scales as R~g~โ€‰โˆโ€‰M (B. M. Tande, et al. Macromolecules 2001, 34, 8580), we obtain dโ€‰โˆโ€‰R~g~, implying a linear increase of the long period with the radius of gyration of the monodendrons.

Model describing the crystalline morphology of the semicrystalline hybrid block copolymers.

magnified imageModel describing the crystalline morphology of the semicrystalline hybrid block copolymers.


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