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Effect of the polarity of reaction medium and electric field on zwitter-ion polymerization of methacrylonitrile (CROSBI ID 160323)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Ranogajec, Franjo Effect of the polarity of reaction medium and electric field on zwitter-ion polymerization of methacrylonitrile // Polimeri : časopis za plastiku i gumu, 30 (2009), 3; 126-130

Podaci o odgovornosti

Ranogajec, Franjo

engleski

Effect of the polarity of reaction medium and electric field on zwitter-ion polymerization of methacrylonitrile

The mechanism of polymerization of methacrylonitrile initiated by triethylphosphine in dimethylformamide and tetrahydrofuran was investigated. The elemental analysis has shown that phosphorus is chemically bound to the polymeric molecules. Analysis by NMR spectroscopy, as well as conductivity measurements, prove that the zwitter-ion structure is formed in the initiation process (scheme). Monomer addition to the carbanion leads to macrozwitter-ion. The initiation reaction is slow and it is the rate determining step. Spontaneous monomolecular termination reaction is inherent to the system. During its life-time, the active centres can exist as either ion pairs or free ions. In the propagation step the free ion is by far the more reactive of the two species. In dimethylformamide the ion pairs play virtually no part in the propagation step and the polymer is formed through the propagation of free ions. The ion pairs-free ions intramolecular equilibrium constant depends on the length of the macrozwitter-ion. Consequently, the polymerization rate depends on the length of the growing chains. The paper presents experimental evidence for this and reports elementary constants for the macrozwitter-ion polymerization.

dielectric constant ; dimethylformamide ; effect of external electric field ; equilibrium ion pair-free ion ; methacrylonitrile ; tetrahydrofuran ; triethylphosphine ; zwitter-ion polymerisation

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Podaci o izdanju

30 (3)

2009.

126-130

objavljeno

0351-1871

1846-0828

Povezanost rada

Kemija

Poveznice
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