Reactive Fluid Ferroelectrics: A Gateway to the Next Generation of Ferroelectric Liquid Crystalline Polymer Networks
arXiv:2501.19333 · doi:10.1002/smll.202501724
Abstract
Herein we report the first examples of reactive mesogenic materials (RMs) which exhibit fluid ferroelectric order based on the recently discovered ferroelectric nematic (NF) phase. We term these materials NF RMs and they provide the first steps towards the next generation of ferroelectric liquid crystalline polymer networks. We report the chemical synthesis and characterisation of the liquid crystalline properties of these materials, demonstrating that they have the lowest longitudinal molecular dipole moments of any reported NF material of 7.39 D. We go on to demonstrate a potential use case of this new class of reactive material through the polymer stabilisation of a matrix which exhibits the NF phase, increasing the phase range of the ferroelectric phase from 75 °C to 120 °C. The NF RMs reported herein are an exciting step forward in ferroelectric liquid crystal research, demonstrating that reactive NF materials are achievable, allowing for the future development of liquid crystalline ferroelectric networks, elastomers and polymers.
References in corpus (14)
- Ferroelectric-ferroelastic phase transition in a nematic liquid crystal
- Development of polar nematic fluids with giant-\k{appa} dielectric properties
- 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
- Tuneable entangled photon pair generation in a liquid crystal
- Observation of a uniaxial ferroelectric smectic A phase
- Spontaneous Symmetry Breaking in Polar Fluids
- Ideal Mixing of Paraelectric and Ferroelectric Nematic Phases in Liquid Crystals of Distinct Molecular Species
- Emergent Anti-Ferroelectric Ordering and the Coupling of Liquid Crystalline and Polar Order
- Systematic Fluorination is a Powerful Design Strategy Towards Fluid Molecular Ferroelectrics
- Ferroelectric Nematic Droplets in their Isotropic Melt
- Polar order in a fluid like ferroelectric with a tilted lamellar structure -- observation of a polar smectic C (SmC) phase
- Antiferroelectric order in nematic liquids: Flexoelectricity vs electrostatics
- Polar self-organization of ferroelectric nematic liquid crystal molecules on atomically flat Au(111) surface