4.6 Article

Lattice mismatch induced strained phase for magnetization, exchange bias and polarization in multiferroic BiFeO3

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RSC ADVANCES
卷 3, 期 46, 页码 24231-24236

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c3ra42790k

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  1. National Natural Science Foundation (NNSF) of China [50972017]

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We have utilized the lattice mismatch between two adjacent nanocrystals in polycrystalline BFO ceramics to introduce a layer of highly strained BFO phase by taking advantage of crystal growth course. Therefore, a spin-valve like structure has been fabricated that consists of ferromagnetic phase (highly strained BFO phase)/antiferromagnetic phase (bulk BFO nanoparticles), without any substrates or alloy layers. BFO ceramics can present an exchange biasing effect ((vertical bar H-EB vertical bar) similar to 36 Oe) with an enhanced magnetic moment (M-s similar to 0.11 mu(B) Fe-1) and in addition saturated polarization (2P(r) similar to 57.4 mu C cm(-2)) at room temperature. A low working electric field (E-c similar to 4.8 kV cm(-1)) shows an advantage of low energy consumption in application. These results imply that there is potential for room temperature applications of single phase BFO with exchange biasing, enhanced magnetization and saturated polarization.

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