Salazar-Alvarez German, Sort Jordi, Suriñach Santiago, Baró M Dolors, Nogués Josep
Institut Català de Nanotecnologia, Institució Catalana de Recerca i Estudis Avançats, and Departament de Física, Campus UAB, Universitat Autonoma de Barcelona, E-08193 Bellaterra, Barcelona, Spain.
J Am Chem Soc. 2007 Jul 25;129(29):9102-8. doi: 10.1021/ja0714282. Epub 2007 Jun 27.
Core-shell nanoparticles of MnO|Mn3O4 with average particle sizes of 5-60 nm, composed of an antiferromagnetic (AFM) core and a ferrimagnetic (FiM) shell, have been synthesized and their magnetic properties investigated. The core-shell structure has been generated by the passivation of the MnO cores, yielding an inverted AFM-core|FiM-shell system, as opposed to the typical FM-core|AFM-shell. The exchange-coupling between AFM and FiM gives rise to an enhanced coercivity of approximately 8 kOe and a loop shift of approximately 2 kOe at 10 K, i.e., exchange bias. The coercivity and loop shift show a non-monotonic variation with the core diameter. The large coercivity and the loop shift are ascribed to the highly anisotropic Mn3O4 and size effects of the AFM (i.e., uncompensated spins, AFM domains, and size-dependent transition temperature).
已合成平均粒径为5 - 60纳米的MnO|Mn3O4核壳纳米颗粒,其由反铁磁(AFM)核和亚铁磁(FiM)壳组成,并对其磁性能进行了研究。通过MnO核的钝化形成了核壳结构,产生了一个倒置的AFM核|FiM壳系统,这与典型的FM核|AFM壳相反。AFM和FiM之间的交换耦合在10 K时产生了约8 kOe的增强矫顽力和约2 kOe的回线偏移,即交换偏置。矫顽力和回线偏移随核直径呈现非单调变化。大矫顽力和回线偏移归因于高度各向异性的Mn3O4以及AFM的尺寸效应(即未补偿自旋、AFM畴和尺寸相关的转变温度)。