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Published on: June 23, 2023
Nanoscale Thermotropic Phase Transitions Enhancing Photothermal Microscopy Signals
A Nicholas G Parra-Vasquez1, Laura Oudjedi1, Laurent Cognet1
1†Université Bordeaux, LP2N, F-33405 Talence, France.
Abstract:
The photothermal heterodyne imaging technique enables studies of individual weakly absorbing nano-objects in various environments. It uses a photoinduced change in the refractive index of the environment. Taking advantage of the dramatic index of refraction change occurring around a thermotropic liquid-crystalline phase transition, we demonstrate a 40-fold signal-to-noise ratio enhancement for gold nanoparticles imaged in 4-cyano-4'-pentylbiphenyl (5CB) liquid crystals over those in a water environment. We studied the photothermal signal as a function of probe laser polarization, heating power, and sample temperature quantifying the optimal enhancement. This study established photothermal microscopy as a valuable technique for inducing and/or detecting local phase transitions at the nanometer scales.

