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Relaxor Ferroelectricity and Magnetoelectric Coupling in ZnO-Co Nanocomposite Thin Films: Beyond Multiferroic Composites

机译:ZnO-Co纳米复合薄膜中的弛豫铁电和磁电耦合:超越多铁性复合材料

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摘要

ZnO-Co nanocomposite thin films are synthesized by combination of pulsed laser deposition of ZnO and Co ion implantation. Both superparamagnetism and relaxor ferroelectricity as well as magnetoelectric coupling in the nanocomposites have been demonstrated. The unexpected relaxor ferroelectricity is believed to be the result of the local lattice distortion induced by the incorporation of the Co nanoparticles. Magnetoelectric coupling can be attributed to the interaction between the electric dipole moments and the magnetic moments, which are both induced by the incorporation of Co. The introduced ZnO-Co nanocomposite thin films are different from conventional strain-mediated multiferroic composites. Kmultiferroics;;magnetoelectric coupling;;relaxor ferroelectricity;;nanocomposite;;ion implantation
机译:ZnO-Co纳米复合薄膜是通过脉冲激光沉积ZnO和Co离子注入的方法合成的。纳米复合材料中的超顺磁性和弛豫铁电以及磁电耦合都得到了证明。据认为,意外的弛豫铁电性是由于掺入Co纳米颗粒而引起的局部晶格畸变的结果。磁电耦合可归因于电偶极矩和磁矩之间的相互作用,这两者都是通过掺入Co引起的。引入的ZnO-Co纳米复合薄膜不同于常规的应变介导的多铁性复合材料。 K multiferroics ;;磁电耦合;; relaxor铁电性;;纳米复合材料;;离子注入

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