Molecular ordering in the high-temperature nematic phase of an all-aromatic liquid crystal

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Abstract

We report the structural characterization of the nematic phase of 2,6-biphenyl naphthalene (PPNPP). This lath-like all-aromatic mesogen provides a valuable benchmark for classical theories of nematic order. PPNPP exhibits a very high temperature nematic phase (417-489 °C) above an enantiotropic smectic A phase. X-ray diffraction reveals a surprisingly strong tendency towards molecular layering in the nematic phase, indicative of "normal cybotaxis" (i.e. SmA-like stratification within clusters of mesogens). Although stronger at low temperatures, the layering is evident well above the smectic A-nematic transition. The nematic order parameter is evaluated as a function of temperature from the broadening of the wide-angle diffuse diffraction feature. Measured values of the orientational order parameter are slightly larger than those predicted by the Maier-Saupe theory over the entire nematic range except for a narrow region just below the clearing point where they significantly drop below the theoretical prediction.

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Vita, F., Hegde, M., Portale, G., Bras, W., Ferrero, C., Samulski, E. T., … Dingemans, T. (2016). Molecular ordering in the high-temperature nematic phase of an all-aromatic liquid crystal. Soft Matter, 12(8), 2309–2314. https://doi.org/10.1039/c5sm02738a

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