Controlling Gaussian and mean curvatures at microscale by sublimation and condensation of smectic liquid crystals
arXiv:1511.07602 · doi:10.1038/ncomms10236
Abstract
Soft materials with layered structure such as membranes, block copolymers, and smectics exhibit intriguing morphologies with nontrivial curvatures. We report on restructuring the Gaussian and mean curvatures of smectic A films with free surface in the process of sintering, i.e. reshaping at elevated temperatures. The pattern of alternating patches of negative, zero, and positive mean curvature of the air-smectic interface has a profound effect on the rate of sublimation. As a result of sublimation, condensation, and restructuring, initially equilibrium smectic films with negative and zero Gaussian curvature are transformed into structures with pronounced positive Gaussian curvature of layers packing, seldom seen in samples obtained by cooling from the isotropic melt. The observed relationship between the curvatures, bulk elastic behaviour, and interfacial geometries in sintering of smectic liquid crystals paves the way for new approaches to control soft morphologies at micron and submicron scales.
34pages, 7 figures and supplementary information with 9 figures and 1 table
Cited by in corpus (6)
- Role of Gaussian curvature on local equilibrium and dynamics of smectic-isotropic interfaces
- Quantum mechanics of fermion confined to a curved surface in Foldy-Wouthuysen representation
- Model of the dynamics of an interface between a smectic phase and an isotropic phase of different density
- Morphology and Photoluminescence of CH3NH3PbI3 Deposits on Nonplanar, Strongly Curved Substrates
- Phase-field model for a weakly compressible soft layered material: morphological transitions on smectic-isotropic interfaces
- Fast Fabrication of Sub-200-nm Nanogrooves using Liquid Crystal Material