Non-ergodic-induced negative differential piezoresponse in relaxor ferroelectrics

C C. Saguy (Solid State Institute, Technion—Israel Institute of Technology 1 , Haifa 3200003,) B B. Kowalski (NASA Glenn Research Center 2 , Cleveland, Ohio 44135,) A A. Sehirlioglu (Department of Material Science and Engineering, Case Western Reserve University 3 , Cleveland, Ohio 44106,) Y Y. Ivry (Solid State Institute, Technion—Israel Institute of Technology 1 , Haifa 3200003,)

Abstract

Relaxor ferroelectrics exhibit a unique competition between long-range and short-range interactions that can be tuned electrically, which prioritizes these materials in a broad range of electro-mechanical energy-conversion technologies, including biomedical imaging and electric-charge generators. Here, we demonstrate differential negative piezoresponse by utilizing the short-range interactions in relaxor ferroelectrics. The effect was observed over a broad temperature range with local piezoresponse spectroscopy in unpoled samples, while no negative piezoresponse was observed when the material was pre-poled. These measurements suggest that the effect, which is promising for power-generation applications, originates from non-ergodic behavior. Complementary macroscale impedance and dielectric constant measurements as a function of temperature and frequency supported the mesoscopic findings. Bearing in mind the direct relationship between piezoresponse and capacitance, relaxor ferroelectrics appear as an excellent platform for the emerging technology of low-power negative-capacitance transistors.

Article Details

Volume / Issue Vol. 126, Issue 7
Published February 17, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (4)

C

C. Saguy

Solid State Institute, Technion—Israel Institute of Technology 1 , Haifa 3200003,

B

B. Kowalski

NASA Glenn Research Center 2 , Cleveland, Ohio 44135,

A

A. Sehirlioglu

Department of Material Science and Engineering, Case Western Reserve University 3 , Cleveland, Ohio 44106,

Y

Y. Ivry

Solid State Institute, Technion—Israel Institute of Technology 1 , Haifa 3200003,