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Peptide Hybrid Polymers (Hardcover, 2006 ed.): Harm-Anton Klok Peptide Hybrid Polymers (Hardcover, 2006 ed.)
Harm-Anton Klok; Contributions by L. Ayres; Edited by Helmut Schlaad; Contributions by T. Deming, J.C.M. Van Hest, …
R5,525 Discovery Miles 55 250 Ships in 10 - 15 working days
Peptide Hybrid Polymers (Paperback, Softcover reprint of hardcover 1st ed. 2006): Harm-Anton Klok Peptide Hybrid Polymers (Paperback, Softcover reprint of hardcover 1st ed. 2006)
Harm-Anton Klok; Contributions by L. Ayres; Edited by Helmut Schlaad; Contributions by T. Deming, J.C.M. Van Hest, …
R5,428 Discovery Miles 54 280 Ships in 10 - 15 working days

1 T.J. Deming: Polypeptide and Polypeptide Hybrid Copolymer Synthesis via NCA Polymerization.- D.W.P.M. Loewik, L. Ayres, J.M. Smeenk, J.C.M. van Hest: Synthesis of Bio-inspired Hybrid Polymers Using Peptide Synthesis and Protein Engineering.- 3 H. Schlaad: Solution Properties of Polypeptide-Based Copolymers.- 4 H.-A. Klok, S. Lecommandoux: Solid State Structure, Organization and Properties of Peptide -Synthetic Hybrid Block Copolymers.- 5 K. Osada, K. Kataoka: Drug and Gene Delivery Based on Supramolecular Assembly of PEG-Polypeptide Hybrid Block Copolymers.-

Functional Polymers by Post-Polymerization Modification - Concepts, Guidelines and Applications (Hardcover): Patrick Theato,... Functional Polymers by Post-Polymerization Modification - Concepts, Guidelines and Applications (Hardcover)
Patrick Theato, Harm-Anton Klok
R4,325 R3,447 Discovery Miles 34 470 Save R878 (20%) Out of stock

n modern polymer science a variety of polymerization methods for the direct synthesis of polymers bearing functional groups are known. However, there is still a large number of functional groups that may either completely prevent polymerization or lead to side reactions. Post-polymerization modification, also known as polymer-analogous modification, is an alternative approach to overcome these limitations. It is based on the polymerization of monomers with functional groups that are inert towards the polymerization conditions but allow a quantitative conversion in a subsequent reaction step yielding a broad range of other functional groups. Thus, diverse libraries of functional polymers with identical average degrees of polymerization but variable side chain functionality may easily be generated.
Filling the gap for a book dealing with synthetic strategies and recent developments, this volume provides a comprehensive and up-to-date overview of the field of post-polymerization modification.
As such, the international team of expert authors covers a wide range of topics, including new synthetic techniques utilizing different reactive groups for post-polymerization modifications with examples ranging from modification of biomimetic and biological polymers to modification of surfaces.
With its guidelines this is an indispensable and interdisciplinary reference for scientists working in both academic and industrial polymer research.

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