English

Intriguing relaxor ferroelectricity in a polar CT crystal at the neutral-ionic interface

Strongly Correlated Electrons 2021-03-10 v1

Abstract

We investigated the mixed-stack charge-transfer crystal, N,N'-dimethylphenazine-TCNQ (M2_2P-TCNQ), which is polar at room temperature and just at the neutral-to-ionic interface (ionicity ρ0.5\rho \approx 0.5). We detect the typical dielectric signature of a relaxor ferroelectric and an asymmetric positive-up-negative-down behavior. While relaxor ferroelectricity is usually ascribed to disorder in the crystal, we find no evidence for structural disorder in the investigated crystals. To elucidate the origin of M2_2P-TCNQ's dielectric properties we perform parallel structural and spectroscopic measurements, associated with theoretical modeling and quantum-mechanical calculations. Our combined effort points to a highly polarizable electronic system that is strongly coupled to lattice vibrations. The found indications for polarization reversal imply flipping of the bent conformation of the M2_2P molecule with an associated energy barrier of a few tens of an eV, broadly consistent with an Arrhenius fit of the dielectric relaxation times. While the polarization is mostly of electronic origin, its possible reversal implies slow collective motions that are affected by solid-state intermolecular interactions.

Keywords

Cite

@article{arxiv.2009.01804,
  title  = {Intriguing relaxor ferroelectricity in a polar CT crystal at the neutral-ionic interface},
  author = {J. K. H. Fischer and G. D'Avino and M. Masino and F. Mezzadri and P. Lunkenheimer and Z. G. Soos and A. Girlando},
  journal= {arXiv preprint arXiv:2009.01804},
  year   = {2021}
}

Comments

13 pages, 12 figures

R2 v1 2026-06-23T18:18:02.592Z