2011/05/31 by Heinz‐Dieter Brandt, Wolfgang Nentwig, Nicola Rooney +7 · 3 citations
Chemistry · Materials Science · #Organometallic Complex Synthesis and Catalysis #biodegradable polymer synthesis and properties #Synthetic Organic Chemistry Methods
paper · doi:10.1002/14356007.o23_o02
openalex publication_date 2011/05/31 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/30
Abstract The article contains sections titled: 1. Synthesis by Anionic Polymerization 1.1. Solution 1,3‐Butadiene ‐ Styrene Rubber (S‐SBR) and Styrene ‐ Isoprene ‐ Butadiene Rubber (S‐SIBR) 1.1.1. Properties, Grades, and Applications 1.1.2. Basic Chemistry and Production Processes 1.1.3. Producers and Production Capacities 1.2. Lithium ‐ Butadiene (Li‐BR) and Lithium ‐ Isoprene (Li‐IR) Rubber 1.2.1. Properties, Grades, and Applications 1.2.2. Basic Chemistry and Production Processes 1.2.3. Producers and Production Capacities 2. Synthesis by Ziegler ‐ Natta Polymerization 2.1. Polybutadiene and Polyisoprene Rubber 2.1.1. Properties, Grades, and Applications 2.1.2. Basic Chemistry and Production Processes 2.1.3. Producers and Production Capacities 2.2. Ethylene ‐ Propene Elastomers (EPM, EPDM) 2.2.1. Properties, Grades, and Applications 2.2.2. Basic Chemistry and Production Processes 2.2.3. Producers and Production Capacities 3. Synthesis of Butyl Rubber by Cationic Polymerization 3.1. Properties, Grades, and Applications 3.1.1. Properties 3.1.2. Grades 3.1.3. Specialty Rubbers 3.1.4. Applications 3.2. Basic Chemistry and Production Processes 3.2.1. Basic Chemistry 3.2.2. Industrial Production 3.3. Producers and Production Capacities 3.4. Storage and Transportation 3.5. Legal Aspects 3.6. Toxicology and Occupational Health