Polar order in a fluid like ferroelectric with a tilted lamellar structure -- observation of a polar smectic C (SmC) phase
arXiv:2408.15859 · doi:10.1002/anie.202416545
Abstract
The discovery of fluid states of matter with spontaneous bulk polar order is appreciated as a major discovery in the fields of soft matter and liquid crystals. Typically, this manifests as polar order superimposed atop conventional phase structures and is thus far limited to orthogonal phase types. Here we report a family of materials which exhibit a previously unseen state of matter which we conclude is a polar smectic C phase, and so we term it SmC. The spontaneous polarisation of the SmC phase is over two orders of magnitude larger than that found in conventional ferroelectric SmC phase of chiral materials used in some LCD devices. Fully atomistic molecular dynamics simulations faithfully and spontaneously reproduce the proposed structure and associated bulk properties; comparison of experimental and simulated X-ray scattering patterns shows excellent agreement. The materials disclosed here have significantly smaller dipole moments than typical polar liquid crystals such as RM734 which suggests the role of molecular electrical polarity in generating polar order is perhaps overstated, a view supported by consideration of other molecular systems.
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Cited by in corpus (6)
- 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
- Polarity from the Bottom Up: A Computational Framework for Predicting Spontaneous Polar Order
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- Thermotropic reentrant isotropy and antiferroelectricity in the ferroelectric nematic material RM734
- Deformed states in paraelectric and ferroelectric nematic liquid crystals