Polar self-organization of ferroelectric nematic liquid crystal molecules on atomically flat Au(111) surface
arXiv:2401.10048 · doi:10.1103/PhysRevLett.132.098101
Abstract
Understanding nanoscale mechanisms responsible for the recently discovered ferroelectric nematics can be helped by direct visualization of self-assembly of strongly polar molecules. Here we report on scanning tunneling microscopy (STM) studies of monomolecular layers of a ferroelectric nematic liquid crystal on a reconstructed Au(111) surface. The monolayers are obtained by deposition from a solution at ambient conditions. The adsorbed ferroelectric nematic molecules self-assemble into regular rows with tilted orientation, resembling a layered structure of a smectic C. Remarkably, each molecular dipole in this architecture is oriented along the same direction giving rise to polar ferroelectric ordering.
15 pages, 3 figures
References in corpus (11)
- Ferroelectric-ferroelastic phase transition in a nematic liquid crystal
- Development of polar nematic fluids with giant-\k{appa} dielectric properties
- Ferroelectric nematic liquid crystalline phases
- Electrooptics of mm-scale polar domains in the ferroelectric splay nematic phase
- Antiferroelectric Smectic Ordering as a Prelude to the Ferroelectric Nematic:Introducing the Smectic Phase
- Soliton walls paired by polar surface interactions in a ferroelectric nematic liquid crystal
- Observation of a uniaxial ferroelectric smectic A phase
- Superscreening and polarization control in confined ferroelectric nematic liquids
- Ideal Mixing of Paraelectric and Ferroelectric Nematic Phases in Liquid Crystals of Distinct Molecular Species
- Explosive electrostatic instability of ferroelectric liquid droplets on ferroelectric solid surfaces
- Walk ferroelectric liquid droplets with light
Cited by in corpus (4)
- Systematic Fluorination is a Powerful Design Strategy Towards Fluid Molecular Ferroelectrics
- Reactive Fluid Ferroelectrics: A Gateway to the Next Generation of Ferroelectric Liquid Crystalline Polymer Networks
- Colossal Dielectric Permittivity and Superparaelectricity in phenyl pyrimidine based liquid crystals
- Deformed states in paraelectric and ferroelectric nematic liquid crystals