Solid aromatic polymers are capable of adsorbing 0, molecules on aromatic rings selectively. The amount of adsorbed oxygen is affected by the chemical nature of the polymer, by the crystalline amorphous ratio, by the kind of crystal structure (polymorphism), and by molecular motions. In particular poly(1,4-oxy 2,6-dimethyl)phenylene is capable of adsorbing large amounts of O2 as demonstrated by its selectivity in O2/N, permeability. A H-1-NMR relaxation study was performed on solid PPO as a function of temperature, and at different [PPO]/[O2] molar ratios. At low temperature an almost quantitative PPO-oxygen complexation is demonstrated. Moreover a careful study of NMR relaxations T1, T1rho, of i.r. spectra, and a comparison with literature data, reveals the presence of two dynamic transitions at temperatures well below the T(g). One of these transitions is frequency dependent and probably related to a delocalized motion along the backbone; the other one, frequency independent, seems to be related to a ring flip.
Oxygen Adsorption on Poly(2,6-Dimethyl)Phenyleneoxide: A Solid State 1H NMR Study
D Capitani;
1993
Abstract
Solid aromatic polymers are capable of adsorbing 0, molecules on aromatic rings selectively. The amount of adsorbed oxygen is affected by the chemical nature of the polymer, by the crystalline amorphous ratio, by the kind of crystal structure (polymorphism), and by molecular motions. In particular poly(1,4-oxy 2,6-dimethyl)phenylene is capable of adsorbing large amounts of O2 as demonstrated by its selectivity in O2/N, permeability. A H-1-NMR relaxation study was performed on solid PPO as a function of temperature, and at different [PPO]/[O2] molar ratios. At low temperature an almost quantitative PPO-oxygen complexation is demonstrated. Moreover a careful study of NMR relaxations T1, T1rho, of i.r. spectra, and a comparison with literature data, reveals the presence of two dynamic transitions at temperatures well below the T(g). One of these transitions is frequency dependent and probably related to a delocalized motion along the backbone; the other one, frequency independent, seems to be related to a ring flip.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


