Deng Xia, Yang Dezheng, Tan Guoguo, Li Xinghua, Zhang Junwei, Liu Qingfang, Zhang Haoli, Mellors Nigel J, Xue Desheng, Peng Yong
Key Laboratory of Magnetism and Magnetic Materials of the Ministry of Education, Lanzhou University, Lanzhou, 730000, P. R. China.
Nanoscale. 2014 Nov 21;6(22):13710-8. doi: 10.1039/c4nr02287d.
Well-defined bimagnetic h-Co decorated wurtzite h-CoO nanotetrapods with uniform size have been successfully fabricated by a one-pot thermal decomposition method for the first time, and their three-dimensional architecture, crystal structure, chemical phase and exchange bias effect are characterized at the nanoscale. It is found that individual bimagnetic h-Co/h-CoO nanotetrapods are made of a h-CoO nanotetrapod skeleton to which multiple nanocrystals of ferromagnetic metallic h-Co are directly attached. The chemical analysis shows that the mass ratio of h-CoO and h-Co is 65 : 35. The detailed investigations of the crystal structure reveal that both the h-CoO nanotetrapod skeleton and h-Co nanoparticles have hexagonal structure. The four pods of individual nanotetrapods are single crystals with the same [001] orientation along with their pod axes and grow together by twinning with (110) the twin interface and the 120° spatial boundary angle. The magnetic measurements reveal that the h-Co/h-CoO nanotetrapods have a surprisingly strong room temperature ferromagnetism and there exists a weak exchange coupling between the h-CoO nanotetrapod skeleton and the decorated h-Co tiny nanoparticles. It is believed that our new structural form of the bimagnetic h-Co/h-CoO nanotetrapods provides not only a smart functional 3D nanoarchitecture as building block in nanoelectronics and nanosensors, but also an ideal specimen for a further understanding of weak antiferromagnetic-ferromagnetic interaction.
首次通过一锅热分解法成功制备出尺寸均匀、轮廓清晰的双磁性h-Co修饰纤锌矿h-CoO纳米四脚架,并在纳米尺度上对其三维结构、晶体结构、化学相和交换偏置效应进行了表征。研究发现,单个双磁性h-Co/h-CoO纳米四脚架由h-CoO纳米四脚架骨架构成,多个铁磁金属h-Co纳米晶体直接附着在该骨架上。化学分析表明,h-CoO与h-Co的质量比为65:35。对晶体结构的详细研究表明,h-CoO纳米四脚架骨架和h-Co纳米颗粒均具有六方结构。单个纳米四脚架的四个支脚是沿支脚轴具有相同[001]取向的单晶,并通过(110)孪晶界面和120°空间边界角孪晶生长在一起。磁性测量结果表明,h-Co/h-CoO纳米四脚架具有令人惊讶的强室温铁磁性,并且h-CoO纳米四脚架骨架与修饰的h-Co微小纳米颗粒之间存在弱交换耦合。据信,我们新的双磁性h-Co/h-CoO纳米四脚架结构形式不仅为纳米电子学和纳米传感器中的构建块提供了一种智能功能三维纳米结构,而且为进一步理解弱反铁磁-铁磁相互作用提供了理想的样本。