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Interphases and Mesophases in Polymer Crystallization III [electronic resource] /edited by Giuseppe Allegra.

by Allegra, Giuseppe [editor.]; SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Advances in Polymer Science: 191Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2005.Description: XIII, 303 p. Also available online. online resource.ISBN: 9783540316046.Other title: With contributions by numerous experts.Subject(s): Chemistry | Polymers | Crystallography | Surfaces (Physics) | Chemistry | Polymer Sciences | Surfaces and Interfaces, Thin Films | CrystallographyDDC classification: 541.2254 Online resources: Click here to access online
Contents:
W. Hu, D. Frenkel: Polymer Crystallization Driven by Anisotropic Interactions -- T. Yamamoto: Molecular Dynamics Modeling of the Crystal-Melt Interfaces and the Growth of Chain Folded Lamellae -- G. Allegra, S.V. Meille: Pre-Crystalline, High-Entropy Aggregates: A Role in Polymer Crystallisation?- M. Hikosakai, K. Watanabe, K. Okada, S. Yamazaki: Topological Mechanism of Polymer Nucleation and Growth – The Role of Chain Sliding Diffusion and Entanglement -- K. Kaji, K. Nishida, T. Kanaya, G. Matsuba, T. Konishi, M. Imai: Spinodal Crystallzation of Polymers: Crystallization from the Unstable Melt -- M. Muthukumar: Modeling Polymer Crystallization.
In: Springer eBooks
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W. Hu, D. Frenkel: Polymer Crystallization Driven by Anisotropic Interactions -- T. Yamamoto: Molecular Dynamics Modeling of the Crystal-Melt Interfaces and the Growth of Chain Folded Lamellae -- G. Allegra, S.V. Meille: Pre-Crystalline, High-Entropy Aggregates: A Role in Polymer Crystallisation?- M. Hikosakai, K. Watanabe, K. Okada, S. Yamazaki: Topological Mechanism of Polymer Nucleation and Growth – The Role of Chain Sliding Diffusion and Entanglement -- K. Kaji, K. Nishida, T. Kanaya, G. Matsuba, T. Konishi, M. Imai: Spinodal Crystallzation of Polymers: Crystallization from the Unstable Melt -- M. Muthukumar: Modeling Polymer Crystallization.

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