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Mesomorphic behaviour of carbazole-N-hexyl acrylate liquid crystal and non-reactive analogues

  • Guang Hu
  • , Lin Liu
  • , Wei Qian
  • , Baolong Zhang
  • , Chenxi Li
  • , Yu Wang
  • , Xiaoyan Gao
  • , Dandan Min
  • , Lei He
  • , Jinquan Wang
  • , Huanjun Lu
  • , Biao Zhang
  • , Stephen M. Kelly
  • Huai’An University
  • Suzhou University of Science and Technology
  • University of Hull

Research output: Contribution to journalArticlepeer-review

Abstract

A novel carbazole-N-hexyl acrylate liquid crystal monomer was synthesised to compare its mesomorphic behaviour with several of its non-polymerisable analogues. The compounds exhibit nematic liquid crystalline properties driven by their core-driven molecular anisotropy, incorporating a rigid, highly conjugated molecular core with flexible aliphatic terminal groups. A hexyl chain was strategically incorporated at a lateral position to induce high solubility in organic solvents and lower the phase transition temperatures. Upon cooling, the photopolymerisable acrylate monomer transforms into a nematic phase at 95°C. Owing to a thermodynamically slow crystallisation process governed by high supercooling viscosity kinetics, the material enters an extensive phase coexistence regime below 46°C, where the marble texture and crystalline domains coexist down to −20°C. DSC analysis reveals a prominent cold crystallisation exotherm and a significant melting endotherm during the second heating cycle, with no observable exothermic peaks during the cooling scans. This behaviour contrasts sharply with its non-polymerisable analogues, which display conventional monotropic mesomorphism featuring a sharp melting peak upon heating, followed by distinct isotropic-to-nematic and nematic-to-crystalline exotherms upon cooling. The delayed crystallisation behaviour of the acrylate monomer may be attributed to suppressed crystal nucleation kinetics caused by molecular entanglement of the bulky terminal acrylate groups.

Original languageEnglish
JournalLiquid Crystals
DOIs
StateAccepted/In press - 2026

Keywords

  • Acrylate liquid crystal
  • carbazole
  • nematic
  • polymerisation

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