Tailoring the Electrocaloric Effect by Internal Bias Fields and Field Protocols

Yang-Bin Ma, Bai-Xiang Xu, Karsten Albe, and Anna Grünebohm
Phys. Rev. Applied 10, 024048 – Published 30 August 2018

Abstract

Defect dipoles, strain gradients, and the electric boundary conditions at interfaces and surfaces often impose internal bias fields in acceptor-doped ferroelectrics, ferroelectric films, nanocomposites, and multilayers. In this work, we study the impact of internal bias fields on the electrocaloric effect (ECE), utilizing an analytical model and ab-initio-based molecular-dynamics simulations. We reveal the complex dependency of the ECE on field protocol and the relative strength of internal and external fields. The internal fields may even reverse the sign of the response (inverse or negative ECE). We explore the transition between conventional and inverse ECE and discuss reversible and irreversible contributions to the field-induced specific entropy change. Most importantly, we predict design routes to optimize the cooling and heating response for small external fields by the combination of internal field strengths and the field-loading protocol.

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  • Received 14 May 2018
  • Revised 10 July 2018

DOI:https://doi.org/10.1103/PhysRevApplied.10.024048

© 2018 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Yang-Bin Ma1, Bai-Xiang Xu1,*, Karsten Albe1, and Anna Grünebohm2

  • 1Institute of Materials Science, Technical University of Darmstadt, 64287 Darmstadt, Germany
  • 2Faculty of Physics and Center for Nanointegration (CENIDE), University of Duisburg-Essen, 47048 Duisburg, Germany

  • *xu@mfm.tu-darmstadt.de

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Vol. 10, Iss. 2 — August 2018

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