217 2. COPOLYMERIZATION OF PROPENE OR HIGHER I-ALKENES WITH 218
CARBON MONOXIDE 2. 1. Ligands and polymerization conditions 218 2.
2. Spiroketal formation 221 2. 3. Enantioselectivity 222 2. 4.
Higher I-Alkenes 226 3. COPOLYMERIZATION OF STYRENE OR ITS
DERIVATIVES WITH 226 CARBON MONOXIDE 4. COPOLYMERIZATION OF OTHER
OLEANS WITH CARBON MONOXIDE 230 5. ASYMMETRIC TERPOLYMERIZATION OF
MORE THAN Two KINDS OF 232 OLEFINS WITH CARBON MONOXIDE 6.
POLYKETONE CONFORMATION 233 7. CONCLUSION 234 Chapter 8. Chain
Propagation Mechanisms 237 Ayusman Sen 1. INTRODUCTION 237 2.
PALLADIUM (II) BASED SYSTEMS 238 3. NICKEL (II) BASED SYSTEMS 256
4. RHODIUM (I) BASED SYSTEMS 257 5. CONCLUSION 261 Chapter 9.
Theoretical Studies on Copolymerization of Polar Monomers 265 Peter
Margl, Artur Michalak, and Tom Ziegler 1. INTRODUCTION 265 2.
COPOLYMERIZATION OF CARBON MONOXIDE WITH ETHYLENE 267 2. 1.
Experimental and calculated rates for the insertion processes for
267 copolymerization catalysed by Pd(II) systems. 2. 2. A more
detailed look at the productive and unproductive cycles 270 in
copolymerization catalysed by Pd(II) complexes. 2. 2. 1. The
productive cycle 270 2. 2. 2. C2H4 misinsertion into an ethylene
terminated polyketone 275 chain 2. 3. Experimental and calculated
rates for the insertion processes for 277 alternating
copolymerization catalyzed by Ni(II) systems 3. COPOLYMERIZATION OF
OLEFINS WITH POLAR MONOMERS OTHER 280 THAN CO 3. 1. Preferred
binding mode of oxygen containing monomers 282 3. 2. Preferred
binding mode of nitrogen containing monomers 285 3. 3.
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