Related Experiment Video
Updated: Jan 19, 2026
Polarity, Bond Dipole Moment and Molecular Shape
Molecular Orientation Change Nearby Topological Defects Observed by Photo-Induced Polarization/Phase Microscopy
Haruka Sakanoue1, Woon Yong Sohn1, Kenji Katayama1,2
1Department of Applied Chemistry, Chuo University, Tokyo 112-8551, Japan.
Abstract:
Topological defects in liquid crystals (LCs) have been intensively studied and intentionally generated in an organized way recently because they could control the alignment and motion of LCs. We studied how the topological defects could change the molecular orientation/alignment from the observation of photo-induced orientation change of a photo-responsive LC. The photo-induced dynamics was observed by an LED-induced time-resolved polarization/phase microscopy with white light illumination. From the color image sequence, we found that the molecular orientation change started from the topological defects and the orientation change propagated as a pair of defects and was connected, and further disordering was induced as a next step after the initial orientation change finished.
Related Concept Videos
Molecular Shape and Polarity
10:03Rapid and Robust Analysis of Cellular and Molecular Polarization Induced by Chemokine Signaling
10:52Direct Imaging of Laser-driven Ultrafast Molecular Rotation
10:10Measurement of Liver Stiffness Using Atomic Force Microscopy Coupled with Polarization Microscopy
We present a protocol to measure the elastic moduli of collagen-rich areas in normal and diseased liver using atomic force microscopy. The simultaneous use of polarization microscopy provides high spatial precision for localizing collagen-rich areas in the liver...
06:49Phase Contrast and Differential Interference Contrast (DIC) Microscopy
05:33Light-Induced In Situ Transmission Electron Microscopy for Observation of the Liquid-Soft Matter Interaction

