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Handbook of polymer crystallization /

"The only comprehensive reference on polymer crystallization, Handbook of Polymer Crystallization provides readers with a broad, in-depth guide on the subject, covering the numerous problems encountered during crystallization as well as solutions to resolve those problems to achieve the desired...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Piorkowska, Ewa (Editor ), Rutledge, Gregory Charles (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Hoboken, New Jersey : Wiley, ©2013.
Edición:First edition.
Temas:
Acceso en línea:Texto completo

MARC

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245 0 0 |a Handbook of polymer crystallization /  |c edited by Ewa Piorkowska, Gregory C. Rutledge. 
250 |a First edition. 
260 |a Hoboken, New Jersey :  |b Wiley,  |c ©2013. 
300 |a 1 online resource (xvi, 481 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
588 0 |a Print version record. 
500 |a Edition statement from first page of chapter PDFs. 
504 |a Includes bibliographical references and index. 
520 |a "The only comprehensive reference on polymer crystallization, Handbook of Polymer Crystallization provides readers with a broad, in-depth guide on the subject, covering the numerous problems encountered during crystallization as well as solutions to resolve those problems to achieve the desired result."--Provided by publisher 
505 0 |a Cover; Title page; Copyright page; Contents; Preface; Contributors; 1: Experimental Techniques; 1.1 Introduction; 1.2 Optical Microscopy; 1.2.1 Reflection and Transmission Microscopy; 1.2.2 Contrast Modes; 1.2.3 Selected Applications; 1.3 Electron Microscopy; 1.3.1 Imaging Principle; 1.3.2 Sample Preparation; 1.3.3 Relevant Experimental Techniques; 1.3.4 Selected Applications; 1.4 Atomic Force Microscopy; 1.4.1 Imaging Principle; 1.4.2 Scanning Modes; 1.4.3 Comparison between AFM and EM; 1.4.4 Recent Development: Video AFM; 1.4.5 Selected Applications; 1.5 Nuclear Magnetic Resonance. 
505 8 |a 1.5.1 Chemical Shift1.5.2 Relevant Techniques; 1.5.3 Recent Development: Multidimensional NMR; 1.5.4 Selected Applications; 1.6 Scattering Techniques: X-Ray, Light, and Neutron; 1.6.1 Wide-Angle X-Ray Diffraction; 1.6.2 Small-Angle X-Ray Scattering; 1.6.3 Small-Angle Light Scattering; 1.6.4 Small-Angle Neutron Scattering; 1.7 Differential Scanning Calorimetry; 1.7.1 Modes of Operation; 1.7.2 Determination of Degree of Crystallinity; 1.8 Summary; Acknowledgments; References; 2: Crystal Structures of Polymers; 2.1 Constitution and Configuration of Polymer Chains. 
505 8 |a 2.2 Conformation of Polymer Chains in Crystals and Conformational Polymorphism2.3 Packing of Macromolecules in Polymer Crystals; 2.4 Symmetry Breaking; 2.5 Packing Effects on the Conformation of Polymer Chains in the Crystals: The Case of Aliphatic Polyamides; 2.6 Defects and Disorder in Polymer Crystals; 2.6.1 Substitutional Isomorphism of Different Chains; 2.6.2 Substitutional Isomorphism of Different Monomeric Units; 2.6.3 Conformational Isomorphism; 2.6.4 Disorder in the Stacking of Ordered Layers (Stacking Fault Disorder); 2.7 Crystal Habits; 2.7.1 Rounded Lateral Habits; Acknowledgments. 
546 |a English. 
590 |a ProQuest Ebook Central  |b Ebook Central Academic Complete 
650 0 |a Crystalline polymers. 
650 6 |a Polymères cristallins. 
650 7 |a SCIENCE  |x Chemistry  |x Organic.  |2 bisacsh 
650 7 |a Crystalline polymers  |2 fast 
700 1 |a Piorkowska, Ewa,  |e editor. 
700 1 |a Rutledge, Gregory Charles,  |e editor. 
758 |i has work:  |a Handbook of Polymer Crystallization [electronic resource] (Text)  |1 https://id.oclc.org/worldcat/entity/E39PD3Py3wxxj3Gx8PXWJbCHfq  |4 https://id.oclc.org/worldcat/ontology/hasWork 
776 0 8 |i Print version:  |t Handbook of polymer crystallization.  |d Hoboken, New Jersey : John Wiley & Sons, Inc., [2013]  |z 9780470380239  |w (DLC) 2012037881  |w (OCoLC)813537794 
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880 8 |6 505-00/(S  |a References -- 3: Structure of Polycrystalline Aggregates -- 3.1 Introduction -- 3.2 Crystals Grown from Solution -- 3.2.1 Facetted Monolayer Crystals from Dilute Solution -- 3.2.2 Dendritic Crystals from Dilute Solution -- 3.2.3 Growth Spirals in Dilute Solution -- 3.2.4 Concentrated Solutions -- 3.3 Crystals and Aggregates Grown from Molten Films -- 3.3.1 Structures in Thin Films -- 3.3.2 Structures in Ultrathin Films -- 3.3.3 Edge-On Lamellae in Molten Films -- 3.4 Spherulitic Aggregates -- 3.4.1 Optical Properties of Spherulites -- 3.4.2 Occurrence of Spherulites -- 3.4.3 Development of Spherulites -- 3.4.4 Banded Spherulites and Lamellar Twist -- Acknowledgments -- References -- 4: Polymer Nucleation -- 4.1 Introduction -- 4.2 Classical Nucleation Theory -- 4.2.1 Nucleation Rate (I) -- 4.2.2 Free Energy for Formation of a Nucleus ΔG(N) -- 4.2.3 Free Energy for Formation of a Critical Nucleus (ΔG*) -- 4.2.4 Shape of a Nucleus Is Related to Kinetic Parameters -- 4.2.5 Diffusion -- 4.3 Direct Observation of Nano-Nucleation by Synchrotron Radiation -- 4.3.1 Introduction and Experimental Procedure -- 4.3.2 Observation of Nano-Nucleation by SAXS -- 4.3.3 Extended Guinier Plot Method and Iteration Method -- 4.3.4 Kinetic Parameters and Size Distribution of the Nano-Nucleus -- 4.3.5 Real Image of Nano-Nucleation -- 4.3.6 Supercooling Dependence of Nano-nucleation -- 4.3.7 Relationship between Nano-Nucleation and Macro-Crystallization -- 4.4 Improvement of Nucleation Theory -- 4.4.1 Introduction -- 4.4.2 Nucleation Theory Based on Direct Observation of Nucleation -- 4.4.3 Confirmation of the Theory by Overall Crystallinity -- 4.5 Homogeneous Nucleation from the Bulk Melt under Elongational Flow -- 4.5.1 Introduction and Case Study -- 4.5.2 Formulation of Elongational Strain Rate e. -- 4.5.3 Nano-Oriented Crystals. 
880 8 |6 505-00/(S  |a 4.5.4 Evidence of Homogeneous Nucleation -- 4.5.5 Nano-Nucleation Results in Ultrahigh Performance -- 4.6 Heterogeneous Nucleation -- 4.6.1 Introduction -- 4.6.2 Experimental -- 4.6.3 Role of Epitaxy in Heterogeneous Nucleation -- 4.6.4 Acceleration Mechanism of Nucleation of Polymers by Nano-Sizing of Nucleating Agent -- 4.7 Effect of Entanglement Density on the Nucleation Rate -- 4.7.1 Introduction and Experimental -- 4.7.2 Increase of νe Leads to a Decrease of I -- 4.7.3 Change of νe with Δt -- 4.7.4 Two-Step Entangling Model -- 4.8 Conclusion -- Acknowledgments -- References -- 5: Growth of Polymer Crystals -- 5.1 Introduction -- 5.1.1 Complex Behavior of Polymers -- 5.2 Growth of Polymer Crystals from Solutions -- 5.2.1 Single Crystals -- 5.2.2 Crystallization from Solution under Shear -- 5.2.3 Solution Casting Method -- 5.3 Growth of Polymer Crystals from Melt -- 5.3.1 Positive and Negative Spherulites -- 5.3.2 Spherulite Morphology and Crystalline Modification -- 5.3.3 Spherulite Patterns of Blend Samples -- 5.4 Crystallization Mechanism of Polymer -- 5.4.1 Basic Theory of Crystallization of Polymer -- 5.4.2 Growth Rate of Spherulites -- 5.5 Microscopically Viewed Structural Evolution in the Growing Polymer Crystals -- 5.5.1 Experimental Techniques -- 5.5.2 Structural Evolution in Isothermal Crystallization -- 5.5.3 Shear-Induced Crystallization of the Melt -- 5.6 Crystallization upon Heating from the Glassy State -- 5.6.1 Cold Crystallization -- 5.6.2 Solvent-Induced Crystallization of Polymer Glass -- 5.7 Crystallization Phenomenon Induced by Tensile Force -- 5.8 Photoinduced Formation and Growth of Polymer Crystals -- 5.9 Conclusion -- References -- 6: Computer Modeling of Polymer Crystallization -- 6.1 Introduction -- 6.2 Methods -- 6.2.1 Molecular Dynamics -- 6.2.2 Langevin Dynamics -- 6.2.3 Monte Carlo -- 6.2.4 Kinetic Monte Carlo. 
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