Specific Heat Study of First Order Smectic A to Smectic B (Hexatic) Transitions in n-Alkyl-4'n-Pentanoyloxy-Biphenyl-4-Carboxylates

Abstract

A recently synthesized and characterized homologous series of liquid crystal compounds (n4C00BC) is shown by high resolution a.c. microcalorimetry experiments (on the n=3, 6 homologues) to most likely exhibit Smectic A to Smectic B (Hexatic) (SmBH) phase transitions exclusively. This is in partial contrast to earlier tentative assignments, based on low resolution calorimetry, x-ray and microscopy studies, which had crystal smectic B (SmBX) for n=4-8 and SmBH for n=3 and 9. The observed SmA-SmBH thermal anomalies exhibit strong fluctuation contributions but are clearly first order. Experimental results are compared with the extensively characterized n-alkyl-4'-alkoxy-biphenyl-4- carboxylates (nmobe's) and discussed in the context of Goodby's empirical molecular structure rules for the existence of the SmBH, and in the context of a generic phase diagram (SmA,BX,BH) recently predicted by Aharony et al. The latter illustrates the physical content of our earlier suggestion that short range hexagonal positional order is responsible for the ubiquitous tricriticality of the SmA-SmBH phase transition.

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Document Details

Document Type
Technical Report
Publication Date
Sep 02, 1988
Accession Number
ADA199290

Entities

People

  • D. Johnson
  • Michael Lewis
  • R. Mahmood
  • V. Surrendranath

Organizations

  • University of Connecticut

Tags

Communities of Interest

  • Air Platforms
  • Energy and Power Technologies
  • Weapons Technologies

DTIC Thesaurus Topics

  • Biphenyl
  • Chemistry
  • Crystal Structure
  • Diagrams
  • Dipole Moments
  • Engineering
  • High Resolution
  • Liquid Chromatography
  • Liquid Crystals
  • Materials
  • Military Research
  • Phase Diagrams
  • Phase Transformations
  • Specific Heat
  • Transition Temperature
  • Universities
  • X Rays

Readers

  • Aerial Delivery - Logistics and Supply Chain Management.
  • Materials Science and Engineering.
  • Quantum spin resonance or Electron Paramagnetic Resonance spectroscopy.