Gandia David, Gandarias Lucía, Marcano Lourdes, Orue Iñaki, Gil-Cartón David, Alonso Javier, García-Arribas Alfredo, Muela Alicia, Fdez-Gubieda Mª Luisa
BCMaterials, Basque Center for Materials, Applications and Nanostructures, UPV/EHU Science Park, 48940 Leioa, Spain.
Dpto. Inmunología, Microbiología y Parasitología, Universidad del País Vasco (UPV/EHU), 48940 Leioa, Spain.
Nanoscale. 2020 Aug 6;12(30):16081-16090. doi: 10.1039/d0nr02189j.
Shape anisotropy is of primary importance to understand the magnetic behavior of nanoparticles, but a rigorous analysis in polyhedral morphologies is missing. In this work, a model based on finite element techniques has been developed to calculate the shape anisotropy energy landscape for cubic, octahedral, and truncated-octahedral morphologies. In all cases, a cubic shape anisotropy is found that evolves to quasi-uniaxial anisotropy when the nanoparticle is elongated ≥2%. This model is tested on magnetosomes, ∼45 nm truncated octahedral magnetite nanoparticles forming a chain inside Magnetospirillum gryphiswaldense MSR-1 bacteria. This chain presents a slightly bent helical configuration due to a 20° tilting of the magnetic moment of each magnetosome out of chain axis. Electron cryotomography images reveal that these magnetosomes are not ideal truncated-octahedrons but present ≈7.5% extrusion of one of the {001} square faces and ≈10% extrusion of an adjacent {111} hexagonal face. Our model shows that this deformation gives rise to a quasi-uniaxial shape anisotropy, a result of the combination of a uniaxial (Ksh-u = 7 kJ m-3) and a cubic (Ksh-c = 1.5 kJ m-3) contribution, which is responsible for the 20° tilting of the magnetic moment. Finally, our results have allowed us to accurately reproduce, within the framework of the Landau-Lifshitz-Gilbert model, the experimental AC loops measured for these magnetotactic bacteria.
形状各向异性对于理解纳米颗粒的磁行为至关重要,但目前缺少对多面体形态的严格分析。在这项工作中,我们开发了一种基于有限元技术的模型,用于计算立方、八面体和截角八面体形态的形状各向异性能量景观。在所有情况下,都发现了立方形状各向异性,当纳米颗粒伸长≥2%时,它会演变为准单轴各向异性。该模型在磁小体上进行了测试,磁小体是在嗜磁螺菌Magnetospirillum gryphiswaldense MSR-1细菌内形成链状的约45 nm截角八面体磁铁矿纳米颗粒。由于每个磁小体的磁矩相对于链轴倾斜20°,这条链呈现出轻微弯曲的螺旋构型。电子冷冻断层扫描图像显示,这些磁小体并非理想的截角八面体,而是其中一个{001}正方形面有≈7.5%的挤压,相邻的{111}六边形面有≈10%的挤压。我们的模型表明,这种变形会产生准单轴形状各向异性,这是单轴(Ksh-u = 7 kJ m-3)和立方(Ksh-c = 1.5 kJ m-3)贡献相结合的结果,它导致了磁矩20°的倾斜。最后,我们的结果使我们能够在朗道-栗弗席兹-吉尔伯特模型的框架内,准确地重现这些趋磁细菌的实验交流磁滞回线。