Related Experiment Video
Updated: Aug 13, 2026

Novel Techniques for Observing Structural Dynamics of Photoresponsive Liquid Crystals
Published on: May 29, 2018
Connecting Nanoscale Molecular Self-Assembly to Macroscale Photophysical Property of Pyrene-Based Liquid Crystal
Minwoo Rim1, Dong-Gue Kang1, Junhwa Jang1
1Department of Polymer-Nano Science and Technology, Department of Nano Convergence Engineering, Jeonbuk National University, Jeonju, Republic of Korea.
Abstract:
Understanding the relationship between material properties and supramolecular nanostructures is essential for elucidating how nanoscale molecular organizations govern macroscale photoluminescence (PL) properties. Here, we introduce a novel pyrene-based liquid crystal mesogen (Py-LCM) and systematically investigate how its molecular packing nanostructures and orientations influence photophysical material properties. Py-LCM exhibits diverse molecular packing structures depending on solvent polarity and concentration in the solution state, leading to a variety of controllable photophysical emissions. Thermodynamic and structural analyses in the solid state reveal that the formation of metastable and stable nanostructures of Py-LCM can be precisely controlled by modulating the kinetic pathway of nanoscale molecular self-assembly. Furthermore, by inducing macroscale molecular orientation, we achieve polarization-dependent photophysical emissions. Finally, we demonstrate the practical application of Py-LCM in optically encrypted systems, taking advantage of its distinct PL characteristics in both solution and solid states.

