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  4. High-resolution dielectric study reveals pore-size-dependent orientational order of a discotic liquid crystal confined in tubular nanopores
 
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High-resolution dielectric study reveals pore-size-dependent orientational order of a discotic liquid crystal confined in tubular nanopores

Publikationstyp
Journal Article
Date Issued
2015-07-08
Sprache
English
Author(s)
Calus, Sylwia  
Kityk, Andriy V.  
Borowik, Lech  
Lefort, Ronan  
Morineau, Denis  
Krause, Christina  
Schönhals, Andreas  
Busch, Mark  orcid-logo
Huber, Patrick  orcid-logo
Institut
Werkstoffphysik und -technologie M-22  
TORE-URI
http://hdl.handle.net/11420/9282
Journal
Physical review E - Statistical, Nonlinear, and Soft Matter Physics  
Volume
92
Issue
1
Article Number
012503
Citation
Physical Review E 92 (1): 012503 (2015-07-08)
Publisher DOI
10.1103/PhysRevE.92.012503
Scopus ID
2-s2.0-84937019495
We report a high-resolution dielectric study on a pyrene-based discotic liquid crystal (DLC) in the bulk state and confined in parallel tubular nanopores of monolithic silica and alumina membranes. The positive dielectric anisotropy of the DLC molecule at low frequencies (in the quasistatic case) allows us to explore the thermotropic collective orientational order. A face-on arrangement of the molecular discs on the pore walls and a corresponding radial arrangement of the molecules is found. In contrast to the bulk, the isotropic-to-columnar transition of the confined DLC is continuous, shifts with decreasing pore diameter to lower temperatures, and exhibits a pronounced hysteresis between cooling and heating. These findings corroborate conclusions from previous neutron and x-ray-scattering experiments as well as optical birefringence measurements. Our study also indicates that the relative simple dielectric technique presented here is a quite efficient method in order to study the thermotropic orientational order of DLC-based nanocomposites.
DDC Class
530: Physics
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