Polarization Switching on the Open Surfaces of the Wurtzite Ferroelectric Nitrides: Ferroelectric Subsystems and Electrochemical Reactivity

Y Yongtao Liu (Key Laboratory of Aquaculture Nutrition and Feed (Ministry of Agriculture and Rural Affairs), Key Laboratory of Mariculture (Ministry of Education), Ocean University of China) A Anton V. Ievlev (Center for Nanophase Materials Sciences, Oak Ridge National Laboratory) E Eugene A. Eliseev (Frantsevich Institute for Problems in Materials Science, National Academy of Sciences of Ukraine 2 , Omeliana Pritsaka St., 3, Kyiv 03142,) A Ali Mohammadi Dinani (Department of Chemical Engineering The Pennsylvania State University University Park Pennsylvania USA) A Alireza Sepehrinezhad (Department of Engineering Science & Mechanics The Pennsylvania State University University Park Pennsylvania USA) U Ubaidullah S. Hassan (Department of Chemistry University of Pennsylvania Philadelphia Pennsylvania 19104‐6323 USA) D Drew Behrendt N Nana Sun K Kazuki Okamoto (Department of Neuroanatomy, Graduate School of Medicine, Juntendo University) H Hiroshi Funakubo A Andrew M. Rappe A Adri C. T. van Duin (Department of Materials Science and Engineering, The Pennsylvania State University 1 , University Park, Pennsylvania 16802,) A Anna N. Morozovska (Institute of Physics, National Academy of Sciences of Ukraine 1 , 46, pr. Nauky, 03028 Kyiv,) S Sergei Kalinin

Abstract

Abstract Binary ferroelectric nitrides are promising materials for information technologies and power electronics. However, polarization switching in these materials is highly unusual. From the structural perspective, polarization reversal is associated with the change of the effective polarity at the surfaces and interfaces from N‐to‐M terminated, suggesting strong coupling between ferroelectric and chemical phenomena. Phenomenologically, macroscopic studies demonstrate the presence of complex time dependent phenomena including wake‐up. Here, the polarization switching using the multidimensional high‐resolution piezoresponse force microscopy (PFM) and spectroscopy is explored, detecting both the evolution of induced ferroelectric domain, electromechanical response, and surface deformation during first‐order reversal curve measurements. The presence of two weakly coupled ferroelectric subsystems are demonstrated and the bias‐induced electrochemical reactivity. The observed behaviors are very similar to the recent studies of other wurtzite system but additionally include electrochemical reactivity, suggesting the universality of these behaviors for the wurtzite binary ferroelectrics. These studies suggest potential of high‐resolution multimodal PFM spectroscopies to resolve complex coupled polarization dynamics in materials. Furthermore, these PFM based studies are fully consistent with the recent electron microscopy observations of the shark‐teeth like ferroelectric domains in nitrides. Hence, it is believed that these studies establish the universal phenomenological picture of polarization switching in binary wurtzite.

Article Details

Volume / Issue Vol. 38, Issue 6
Published January 01, 2026
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (14)

Y

Yongtao Liu

Key Laboratory of Aquaculture Nutrition and Feed (Ministry of Agriculture and Rural Affairs), Key Laboratory of Mariculture (Ministry of Education), Ocean University of China

A

Anton V. Ievlev

Center for Nanophase Materials Sciences, Oak Ridge National Laboratory

E

Eugene A. Eliseev

Frantsevich Institute for Problems in Materials Science, National Academy of Sciences of Ukraine 2 , Omeliana Pritsaka St., 3, Kyiv 03142,

A

Ali Mohammadi Dinani

Department of Chemical Engineering The Pennsylvania State University University Park Pennsylvania USA

A

Alireza Sepehrinezhad

Department of Engineering Science & Mechanics The Pennsylvania State University University Park Pennsylvania USA

U

Ubaidullah S. Hassan

Department of Chemistry University of Pennsylvania Philadelphia Pennsylvania 19104‐6323 USA

D

Drew Behrendt

N

Nana Sun

K

Kazuki Okamoto

Department of Neuroanatomy, Graduate School of Medicine, Juntendo University

H

Hiroshi Funakubo

A

Andrew M. Rappe

A

Adri C. T. van Duin

Department of Materials Science and Engineering, The Pennsylvania State University 1 , University Park, Pennsylvania 16802,

A

Anna N. Morozovska

Institute of Physics, National Academy of Sciences of Ukraine 1 , 46, pr. Nauky, 03028 Kyiv,

S

Sergei Kalinin