4.7 Article

Boosting Magnetoelectric Effect in Polymer-Based Nanocomposites

期刊

NANOMATERIALS
卷 11, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/nano11051154

关键词

multiferroics; magnetoelectric effect; nanoparticles; cobalt ferrite; barium titanate; PVDF; PVDF-TrFE

资金

  1. Russian Foundation for Basic Research (RFBR) [18-32-20219]
  2. Russian Science Foundation [21-72-30032, 18-79-10265]
  3. 5 top 100 Russian Academic Excellence Project at the Immanuel Kant Baltic Federal University
  4. Grant of the President the Russian Federation [MK-716.2020.2]
  5. Ministry of Science and Higher Education of the Russian Federation, the State Assignment (basic research) [07182020-0031]
  6. Ministry of Education
  7. Science of the Russian Federation the Increase Competitiveness Program of NUST MISiS [K2-2019-015]
  8. Swedish National Space Agency [2020-00163]
  9. Russian Science Foundation [18-79-10265, 21-72-30032] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

Polymer-based magnetoelectric composite materials show high potential in various applications such as magnetic field sensors, energy harvesting, and biomedical devices. Current research focuses on increasing the efficiency of magnetoelectric transformation. Strategies such as clustering magnetic nanoparticles and incorporating piezoelectric particles have been proposed to enhance the alpha ME value of the magnetoelectric effect.
Polymer-based magnetoelectric composite materials have attracted a lot of attention due to their high potential in various types of applications as magnetic field sensors, energy harvesting, and biomedical devices. Current researches are focused on the increase in the efficiency of magnetoelectric transformation. In this work, a new strategy of arrangement of clusters of magnetic nanoparticles by an external magnetic field in PVDF and PFVD-TrFE matrixes is proposed to increase the voltage coefficient (alpha ME) of the magnetoelectric effect. Another strategy is the use of 3-component composites through the inclusion of piezoelectric BaTiO3 particles. Developed strategies allow us to increase the alpha ME value from similar to 5 mV/cm.Oe for the composite of randomly distributed CoFe2O4 nanoparticles in PVDF matrix to similar to 18.5 mV/cm.Oe for a composite of magnetic particles in PVDF-TrFE matrix with 5%wt of piezoelectric particles. The applicability of such materials as bioactive surface is demonstrated on neural crest stem cell cultures.

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