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Critical and Glassy Dualism in Glass-Forming E7 Nematogenic Mixture and Fullerene C60 Nanocolloids
Aleksandra Drozd-Rzoska1, Mateusz Kotowski1, Jakub Kalabiński1
1Institute of High Pressure Physics of the Polish Academy of Sciences, ul. Sokołowska 29/37, 01-142 Warsaw, Poland.
Abstract:
The report presents the results of broadband dielectric spectroscopy (BDS) studies in bulk nanocolloids: E7 liquid crystalline (LC) mixture plus C60 fullerene nanoparticles. BDS spectra for 260 temperatures from the isotropic liquid (I) phase at ~360 K to the nematic (N) phase at the glass temperature Tg ~ 220 K were tested. The analysis focused on pretransitional critical-like features and complex glassy dynamics, highlighting their interplay and dominance. This is associated with pretransitional fluctuations, which impact the nematic phase even 90 K below the I-N transition. On approaching Tg, strong previtreous changes detected via dielectric constant and the loss curve maximum appear, starting at Tg+30 K. The critical-like behavior on T→Tg was observed also for the parameter describing the distribution of relaxation times. For the three main relaxation times in the long-range nematic phase, the optimal portrayal via the new Critical and Activated equation is evidenced. The derivative-based test of coupling/decoupling between translational and orientational processes reveals strong decoupling with the fractional exponent F<1 below the I-N transition and related to F<1 above Tg. Notable is the permanent 'parallel' orientation of LC molecules by C60 fullerene nanoparticles, which can be significant for applications.

