Crumpling electret films for a stronger macroscopic flexoelectric response

Author:

Ma Jianhua1ORCID,Chen Lingling1ORCID,Xu Jinrui1ORCID,Yang Shengyou12ORCID,Wang Binglei1ORCID

Affiliation:

1. Department of Engineering Mechanics, Shandong University 1 , Jinan 250061, China

2. Digital Intelligence Construction Research Center, Shandong University-Shandong Tongfa Group 2 , Jinan 250013, China

Abstract

Flexoelectricity is a universal phenomenon in all dielectrics, which couples electrical polarizations with strain gradients. However, limited by the size effects, the intensity of the flexoelectric effect becomes appreciable at the micro- and nano-scale, which suppresses its applications at the macroscale. To amend this inconvenience in applications, we innovatively propose replacing the traditional pure dielectric film with flexoelectret film containing quasi-permanent electrical charges in crumpling deformation. The crumpled flexoelectret film can give a considerable flexoelectric-like response at the macroscale. Specifically, we establish a theoretical model for the crumpled flexoelectret film, derive the analytical solution of the electromechanical coupling under the bi-directional bending conditions, and analyze the flexoelectric-like response under different thicknesses, charge densities, and scales. The results show that when the flexoelectret film’s thickness H=1mm and the charge density q=−0.2mC ⋅m−2, the intensity of its flexoelectric-like response is nearly 100 times of that of pure dielectric film’s intrinsic flexoelectricity.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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