AI Article Synopsis

  • Polar van der Waals chalcogenophosphates have unique properties like negative electrostriction and multi-well ferrielectricity, allowing their use in dielectric and 2D electronic applications.
  • Using low-temperature piezoresponse force microscopy, researchers discovered piezoelectric and non-piezoelectric phases coexisting in CuInPSe, which creates unusual domain walls with a heightened piezoelectric response.
  • The findings indicate a partially polarized antiferroelectric state with distinct ferrielectric domains, supported by optical spectroscopies and calculations, paving the way for innovative use of functional domain walls in van der Waals heterostructures.

Article Abstract

Polar van der Waals chalcogenophosphates exhibit unique properties, such as negative electrostriction and multi-well ferrielectricity, and enable combining dielectric and 2D electronic materials. Using low temperature piezoresponse force microscopy, we revealed coexistence of piezoelectric and non-piezoelectric phases in CuInPSe, forming unusual domain walls with enhanced piezoelectric response. From systematic imaging experiments we have inferred the formation of a partially polarized antiferroelectric state, with inclusions of structurally distinct ferrielectric domains enclosed by the corresponding phase boundaries. The assignment is strongly supported by optical spectroscopies and density-functional-theory calculations. Enhanced piezoresponse at the ferrielectric/antiferroelectric phase boundary and the ability to manipulate this entity with electric field on the nanoscale expand the existing phenomenology of functional domain walls. At the same time, phase-coexistence in chalcogenophosphates may lead to rational strategies for incorporation of ferroic functionality into van der Waals heterostructures, with stronger resilience toward detrimental size-effects.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7368031PMC
http://dx.doi.org/10.1038/s41467-020-17137-0DOI Listing

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