AI Article Synopsis

  • The study examines the properties of a binary mixture of n-tricosane and n-octacosane, highlighting the existence of a hexatic phase where long-range order is lost but hexagonal symmetry remains.
  • Confinement within narrow alumina pores alters the temperature range and molecular ordering of the hexatic phase, leading to unique behaviors compared to bulk conditions.
  • The research employs temperature-dependent X-ray diffraction and theoretical models to understand the hexatic phase's behavior and the effects of confinement on the mixture.

Article Abstract

Bulk phase binary mixture of two rotator phase forming alkanes, n-tricosane (CH) and n-octacosane (CH), has been previously studied. CH exists in the R and R phases, whereas CH exists in the R and R phases. Over a certain range of composition, this binary mixture was found to exist in R, R and an intervening mesophase was reported to be the hexatic phase, wherein the long-range two-dimensional in-plane hexagonal lattice order of the R is lost and what remains is molecules present in hexagonal geometry without long-range positional correlation between individual hexagons. Upon confinement in cylindrical anodized alumina pores 200 nm wide, on the one hand, the temperature range of the hexatic phase was found to extend, and on the other hand, it underwent increased molecular ordering compared to the hexatic phase in bulk, exhibiting two counter-reacting behaviors in confinement. We provide here a temperature-dependent X-ray diffraction study and a theoretical approach combining the Landau and Flory-Huggins theories to, first, understand the underlying mechanism leading to emergence of the hexatic phase and then to explain the effect of confinement on it in the light of finite size and interfacial interaction between the alkanes and alumina pores.

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Source
http://dx.doi.org/10.1021/acs.jpcb.8b09017DOI Listing

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