Journal of the American Chemical Society · 2021 · 33 citations · 43 references
EngineeringTerminal Chain EndOrganic ChemistryTerminative CouplingChemistryPolymersMacromolecular EngineeringPolymer ChemistrySynthetic MacromoleculeStereoregular Telechelic PolyDiversity-oriented SynthesisLiving PolymerizationRhodium-catalyzed Living PolymerizationTerminal OrganorhodiumBiomolecular EngineeringNatural SciencesPolymer SciencePolymerization KineticsFunctional PolymerPolymer ReactionSynthetic ChemistryPolymer Synthesis
Various α,β-unsaturated carbonyl compounds, such as acrylates and acrylamides, were quantitatively introduced to the terminal chain end of poly(phenylacetylene)s by C-C bond formation with terminal organorhodium(I) species formed in the living polymerization of phenylacetylenes with a rhodium-based multicomponent catalytic system that we have recently developed, when these carbonyl compounds were used as terminating reagents. This enables the facile and versatile synthesis of stereoregular telechelic poly(phenylacetylene)s with various functional groups at both the initial and terminal chain ends because the components of aryl boronic acid derivatives used as initiators in our multicomponent catalytic system are quantitatively introduced to the initiating end of the resulting polymer.
43
Jacky W. Y. Lam, Ben Zhong Tang · Accounts of Chemical Research · 2005 · 719 citations
Polymerization of acetylenic derivatives. XXX. Isomers of polyphenylacetylene
Cristofor I. Simionescu, Virgil Percec, Svetlana Dumitrescu · Journal of Polymer Science Polymer Chemistry Edition · 1977 · 390 citations · Full text
Chemical Engineering, Macromolecular Chemistry, Acetylenic Derivatives +13