Fs. Yen et Jl. Hong, HYDROGEN-BOND INTERACTIONS BETWEEN ESTER AND URETHANE LINKAGES IN SMALL MODEL COMPOUNDS AND POLYURETHANES, Macromolecules, 30(25), 1997, pp. 7927-7938
Four model compounds (U-s, U-u, UEex, and UEin) and two polyurethanes
(PU1 and PU2) were prepared to monitor the hydrogen-bond (H-bond) inte
ractions of urethane-urethane and urethane-ester (including external a
nd internal esters). The results from differential scanning calorimetr
y (DSC) and X-ray diffraction suggested that the infrared absorption p
atterns in the -NH and -C=O regions are closely related to the thermal
history of the test specimen. Except for the incapability of the inte
rnal ester -C=O to form an II-bond with urethane -NH, five -C=O absorp
tion bands can be assigned and attributed to free internal ester, free
urethane, free external ester, bonded external ester, and disordered
and ordered bonded urethane absorptions. The frequencies of the respec
tive -C=O band maxima obtained from the model compounds were given. In
cases of polyurethanes, the -C=O absorption of the amorphous PU1 was
assigned on the basis of the deconvoluted result of a heat-treated UEe
x, while the liquid crystalline PU2 has its -C=O absorptions assigned
on the basis of the physical states of the test specimen. The as-react
ed PU2 has its -C=O absorptions closely related to the heat-treated UE
in; however, as PU2 was heated into the mesophase, the orientation ord
er caused the corresponding -C=O absorptions similar to those for the
as-reacted UEin.