TY - JOUR
T1 - Synthesis and characterization of optically active helical vinyl polymers via free radical polymerization
AU - Zhi, Junge
AU - Guan, Yan
AU - Cui, Jiaxi
AU - Liu, Anhua
AU - Zhu, Zhiguo
AU - Wan, Xinhua
AU - Zhou, Qifeng
PY - 2009/5/1
Y1 - 2009/5/1
N2 - A facile synthetic route to prepare the dual-functional molecule, 2,5-bis(4′-carboxyphenyl)styrene, was developed. The esterification of this compound with chiral alcohols, that is, (S)-(+)-sec-butanol/(R)-(-)-sec- butanol, (S)-(+)-sec-octanol/(R)-(-)-sec-octanol, and D-(+)-menthol/L-(-)- menthol, respectively, yielded three enantiomeric pairs of novel vinyl monomers, which underwent radical polymerization to obtain helical polymers with an excess screw sense. These polymers exhibited optical rotations as large as fourfold those of the corresponding monomers. Their helical conformations were quite stable as revealed by the almost unchanged chiroptical properties measured at different temperatures. The polymers with linear alkyl tails in the side-groups formed irreversibly columnar nematic phases in melt although the corresponding monomers were not liquid crystalline. Whereas, the polymers with cyclic tails generated no mesophase.
AB - A facile synthetic route to prepare the dual-functional molecule, 2,5-bis(4′-carboxyphenyl)styrene, was developed. The esterification of this compound with chiral alcohols, that is, (S)-(+)-sec-butanol/(R)-(-)-sec- butanol, (S)-(+)-sec-octanol/(R)-(-)-sec-octanol, and D-(+)-menthol/L-(-)- menthol, respectively, yielded three enantiomeric pairs of novel vinyl monomers, which underwent radical polymerization to obtain helical polymers with an excess screw sense. These polymers exhibited optical rotations as large as fourfold those of the corresponding monomers. Their helical conformations were quite stable as revealed by the almost unchanged chiroptical properties measured at different temperatures. The polymers with linear alkyl tails in the side-groups formed irreversibly columnar nematic phases in melt although the corresponding monomers were not liquid crystalline. Whereas, the polymers with cyclic tails generated no mesophase.
KW - 2,5-bis(4′- carboxyphenyl)styrene
KW - 2,5-bis(4′-alkoxycarbonylphenyl)styrene
KW - Chiral
KW - Columnar nematic phase
KW - Helical conformation
KW - Liquid-crystalline polymer
KW - Radical polymerization
UR - http://www.scopus.com/inward/record.url?scp=65949120229&partnerID=8YFLogxK
U2 - 10.1002/pola.23331
DO - 10.1002/pola.23331
M3 - Article
AN - SCOPUS:65949120229
SN - 0887-624X
VL - 47
SP - 2408
EP - 2421
JO - Journal of Polymer Science, Part A: Polymer Chemistry
JF - Journal of Polymer Science, Part A: Polymer Chemistry
IS - 9
ER -