Journal of Polymer Science Polymer Symposia · 1973 · 19 citations · 20 references
Polymerization TemperatureEngineeringZiegler Soluble CatalystsChemistryPolymersChemical EngineeringPolymer TechnologyMacromolecular EngineeringPolymer ProcessingOrganometallic CatalysisHomogeneous CatalysisElectrophysical PropertiesHybrid MaterialsPolymer ChemistryC 4α‐Ethynyl NaphtaleneMaterials ScienceInorganic ChemistryPolymer EngineeringCatalysisAcetylenic DerivativesPolymer SciencePolymer ReactionPolymer Synthesis
Abstract The polymerization of α‐ethynyl naphtalene, (EN) with Ziegler soluble catalysts and tertiary phosphine‐transition metal complexes has been investigated. The following catalysts, Me II (dmg) 2 . 2X/Al(R) 2 R′, (where Me II = Fe, Ni; dmg = dimethylglyoxime; X = pyridine, Py, or NH 3 ; R = C 2 H 5 , i ‐ C 4 H 9 and R′ = C 2 H 5 , i‐C 4 H 9 , Cl), specific to cis polymerization of acetylenic monomers and (PPh 3 ) a . MeX b (where Ph = C 6 H 5 ; a = 2,3; Me = transition metal of group VIII; X = Cl, Br, I, SCN and b = 2, 1) specific to trans polymerization of these monomers have been used. The influence of some reaction parameters (i.e., polymerization temperature, temperature of the first catalyst‐monomer contact, catalyst nature and concentration, etc.) have been followed and two different mechanisms of EN with the said catalysts were proposed. The obtained polymers were analysed from the point of view of their structural and electrophysical properties.
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Resonance in Organic Chemistry.
John D. Roberts · Journal of the American Chemical Society · 1956 · 482 citations
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Hiroshi Itatani, John C. Bailar · Journal of the American Oil Chemists Society · 1967 · 137 citations