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Preface | ix | |
1. | The Organometallic Polymerization of (Meth)acrylates: An Overview | 1 |
New Chain-Building Mechanisms | ||
2. | New Applications of "Carbonylbis(triphenylphosphine)ruthenium" Catalysis in Polymer Synthesis | 24 |
3. | Transition Metal-Catalyzed Alkyne Cycloaddition Polymerization | 38 |
4. | Synthetic Control over Substituent Location on Carbon-Chain Polymers Using Ring-Opening Polymerization of Small Cycloalkanes | 59 |
5. | Nucleophilic Polymerization of Methyl Methacrylate Activated by a Bronsted Acid | 77 |
Polymer Modification Using Transition Metals | ||
6. | Modification of Polybutadiene by Transition Metal Catalysts: Hydroacylation of Polybutadiene | 94 |
7. | Metallocene Catalysts Used for the Hydrogenation of Polystyrene-b-Polybutadiene-b-Polystyrene Block Copolymers | 108 |
8. | E-Glass Fiber Supported Hydrosilation Catalysts | 127 |
Olefin/Alkyne Addition Polymerization | ||
9. | New Catalysts for Polymerizations of Substituted Acetylenes | 146 |
10. | Addition Polymerization of Norbornene: Catalysis of Monocyclopentadienyltitanium Compounds Activated with Methylaluminoxane | 165 |
11. | Transfer and Isomerization Reactions in Propylene Polymerization with the Isospecific, Highly Regiospecific rac-Me[subscript 2]C(3-t-Bu-1-Ind)[subscript 2]ZrCl[subscript 2]/MAO Catalyst | 174 |
Controlled Radical Polymerization | ||
12. | Living Radical Polymerization of Acrylates with Rhenium(V)-Based Initiating Systems: ReO[subscript 2]I(PPh[subscript 3])[subscript 2]/Alkyl Iodide | 196 |
13. | The Effect of Ligands on Copper-Mediated Atom Transfer Radical Polymerization | 207 |
14. | Structural Chemistry and Polymerization Activity of Copper(I) Atom Transfer Radical Polymerization Catalysts | 224 |
15. | Atom Transfer Polymerization Mediated by Solid-Supported Catalysts | 236 |
16. | Mechanistic Aspects of Catalytic Chain Transfer Polymerization | 254 |
Indexes | ||
Author Index | 275 | |
Subject Index | 276 |
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Add Transition Metal Catalysis in Macromolecular Design, Metal-mediated polymerization is fast becoming an essential tool for the fine control of macromolecular architecture. Advanced Catalysis demonstrates how the field of transition metal-catalyzed polymer syntheses has moved beyond the simple u, Transition Metal Catalysis in Macromolecular Design to the inventory that you are selling on WonderClubX
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Add Transition Metal Catalysis in Macromolecular Design, Metal-mediated polymerization is fast becoming an essential tool for the fine control of macromolecular architecture. Advanced Catalysis demonstrates how the field of transition metal-catalyzed polymer syntheses has moved beyond the simple u, Transition Metal Catalysis in Macromolecular Design to your collection on WonderClub |