January 2014

Journal

Local probing of relaxation time distributions in ferroelectric polymer nanomesas: Time-resolved piezoresponse force spectroscopy and spectroscopic imaging

By:
Rodriguez, Brian; Jesse, Stephen ; Kim, J.; Ducharme, S.; Kalinin, Sergei V
Journal Name:
Applied Physics Letters
Page Number:
232903
Volume:
92
Issue Number:
23
Publication Date:
January 14, 2014
View DOI Listing:
https://doi.org/10.1063/1.2942390

Abstract

Time-resolved piezoresponse force spectroscopy (TR-PFS) and spectroscopic imaging are developed to probe the spatial variability of relaxation behavior in nanoscale ferroelectric materials and structures. TR-PFS was applied to study polarization dynamics in polyvinylidine fluoride and trifluoroethylene nanomesas. We demonstrate that polarization relaxation in ferroelectric polymers is slow even on the ∼ 10 nm length scale of piezoresponse force microscopy (PFM) signal generation. Furthermore, the relaxation times are found to be nonuniform within the nanomesa, indicative of a complex internal structure. The applicability of TR-PFM for studies of polarization dynamics in ferroelectric polymers and relaxors is discussed.


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