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Synthesis and characterization of liquid crystalline copolymers with dual photochromic pendant groups
Authors:Po-Chih Yang
Affiliation:Department of Chemical Engineering, National Cheng Kung University, No. 1, University Road, Tainan 70101, Taiwan, ROC
Abstract:In order to study the photoreactivity and the optical properties of liquid crystalline copolymers with multiple photochromic groups, a series of novel liquid crystalline binary and ternary polyacrylates consisting of one (Cdouble bond; length as m-dashC or Ndouble bond; length as m-dashN) or dual (Cdouble bond; length as m-dashC and Ndouble bond; length as m-dashN) photochromic segments were synthesized and characterized considering their liquid crystalline, optical, and photochromic properties and their thermal stability. Achiral homopolymer P1 shows a smectic A phase (fan-shaped texture), and all chiral copolymers CP1-CP6 exhibit chiral nematic phases (cholesteric, oily streaks textures). The polymers show excellent solubility in common organic solvents such as chloroform, toluene, and THF. These polymers also exhibit good thermal stability, with decomposition temperatures (Tds) greater than 373 °C at 5% weight loss, and beyond 440 °C at 50% weight loss under nitrogen atmosphere. UV irradiation caused E/Z photoisomerization at Ndouble bond; length as m-dashN and Cdouble bond; length as m-dashC segments of the synthesized photochromic copolymers leading to reversible and irreversible isomerizations, respectively. The synthesized liquid crystalline ternary copolymer CP6, containing two different photochromic Ndouble bond; length as m-dashN and Cdouble bond; length as m-dashC groups, is sensitive to different UV wavelengths and is notably interesting from the viewpoint of photochromic copolymers.
Keywords:Chiral  Photochemistry  Isomerization
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