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Updated: Aug 27, 2026

Preparation of Monodomain Liquid Crystal Elastomers and Liquid Crystal Elastomer Nanocomposites
Published on: February 6, 2016
A Crown Ether-Based LCST Molecule With Cation Size Selective Matching Capability for Efficient Management of Solar
Sifan Chen1, Yuhang Tao1, Min Wang1
1State Key Laboratory of Advanced Separation Membrane Materials, Zhejiang Key Laboratory of Advanced Polymer Materials Modification and Application Technology, Zhejiang Engineering Research Center of Functional Composite Materials and Electronic Packaging, College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, P.R. China.
Abstract:
Supramolecular matter exhibiting a lower critical solution temperature (LCST) represents a typical class of thermo-responsive systems with controllable phase separation performance, and they have attracted widespread attention. Herein, we report a novel crown ether-based supramolecular material with tunable LCST properties. The crown ether compound itself, namely CG, is composed of a long ethylene glycol (EG) chain conjugated with dibenzo-24-crown-8 (DB24C8). Compound CG exhibits good solubility in aqueous solution (20 mg/mL) and demonstrates excellent LCST performance, demonstrating a cloud point temperature (Tcp) = 30°C, with a thermal hysteresis ΔT = 0.2°C and good reversibility. Interestingly, the LCST properties can be further modulated through supramolecular complexation between CG and certain cations, enhancing the tunability of the CG molecule. A smart window was thus fabricated for efficient management of solar radiation, achieving ∆Tlum (luminous transmittance), ∆TIR (IR transmittance) and ∆Tsol (solar modulation) values of 97.2%, 79.4%, and 86.4%. Notably, the reduced freezing point of the CG solution upon the addition of cations also offers the application potential of such smart windows in cold regions.
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