Capillary Forces between Planar Anchoring Surfaces in the Isotropic Phase of a Nematic Liquid Crystal
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Reference16 articles.
1. Long Range Attractive Surface Forces Due to Capillary-Induced Polymer Incompatibility
2. Phase Transition in Surface-Aligned Nematic Films
3. Boundary-layer phase transition in nematic liquid crystals
4. Molecular statistical theory for inhomogeneous nematic liquid crystals with boundary conditions
5. Theory of the Nematic-Isotropic Transition in a Restricted Geometry
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