TY - JOUR
T1 - Influence of cyclobutane segments in cycloaliphatic decahydronaphthalene-containing copolyesters
AU - Dennis, Joseph M.
AU - Fazekas, Nicole A.
AU - Mondschein, Ryan J.
AU - Ramakrishnan, Ramesh
AU - Nazarenko, Sergei
AU - Long, Timothy Edward
PY - 2017/8/1
Y1 - 2017/8/1
N2 - Melt transesterification polycondensation enabled the incorporation of rigid, cycloaliphatic diols (2,2,4,4-tetramethylcyclobutane-1,3-diol) into decahydronaphthalene-containing copolyesters, which resulted in amorphous, optically clear materials. Glass transition temperatures approached 155°C and followed predictable trends using the Fox equation for randomly sequenced copolymers. Dynamic mechanical analysis identified several low-temperature relaxations attributed to the complex motions of the decahydronaphthalate and cyclohexyl rings within the polymer backbone. Furthermore, incorporating cyclobutane rings suppressed the low-temperature local mobility, revealing a strong structural dependence on these relaxations. The rheological simplicity of these nonassociating chains permitted analysis over a large frequency window using time-temperature superposition. As a result, the characteristic relaxation times provided insight into chain dynamics and the propensity for chain entanglements. Finally, positron annihilation lifetime spectroscopy probed hole-free volume and reinforced the trends observed with oxygen permeability measurements.
AB - Melt transesterification polycondensation enabled the incorporation of rigid, cycloaliphatic diols (2,2,4,4-tetramethylcyclobutane-1,3-diol) into decahydronaphthalene-containing copolyesters, which resulted in amorphous, optically clear materials. Glass transition temperatures approached 155°C and followed predictable trends using the Fox equation for randomly sequenced copolymers. Dynamic mechanical analysis identified several low-temperature relaxations attributed to the complex motions of the decahydronaphthalate and cyclohexyl rings within the polymer backbone. Furthermore, incorporating cyclobutane rings suppressed the low-temperature local mobility, revealing a strong structural dependence on these relaxations. The rheological simplicity of these nonassociating chains permitted analysis over a large frequency window using time-temperature superposition. As a result, the characteristic relaxation times provided insight into chain dynamics and the propensity for chain entanglements. Finally, positron annihilation lifetime spectroscopy probed hole-free volume and reinforced the trends observed with oxygen permeability measurements.
KW - BPA-replacement
KW - free volume
KW - naphthalene
KW - PALS
KW - Polyester
UR - http://www.scopus.com/inward/record.url?scp=85025475700&partnerID=8YFLogxK
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U2 - 10.1177/0954008317708606
DO - 10.1177/0954008317708606
M3 - Article
AN - SCOPUS:85025475700
SN - 0954-0083
VL - 29
SP - 750
EP - 756
JO - High Performance Polymers
JF - High Performance Polymers
IS - 6
ER -