The zero field self-organization of cobalt/surfactant nanocomposite thin films

被引:4
作者
Cataldo, Sebastiano [1 ]
Pignataro, Bruno [1 ]
Ruggirello, Angela [1 ]
Bongiorno, Corrado [2 ]
Liveri, Vincenzo Turco [1 ]
机构
[1] Univ Palermo, Dipartimento Chim Fis F Accascina, I-90128 Palermo, Italy
[2] IMM, I-95121 Catania, Italy
关键词
SCANNING FORCE MICROSCOPY; MAGNETIC NANOWIRES; COBALT; NANOSTRUCTURES; NANOPARTICLES; NANOFIBERS;
D O I
10.1088/0957-4484/20/22/225605
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Cobalt nanostructures have been prepared by a chemical route based on the Co(II) reduction in the confined space of cobalt bis(2-ethylhexyl) sulfosuccinate (Co(DEHSS)(2)) reverse micelles dispersed in n-heptane. This procedure involves the rapid formation of surfactant softly coated Co nanostructures followed by a slow separation process of the magnetic-field responsive Co/surfactant nanocomposites from the liquid phase. The detailed structure of thin films of the Co/surfactant nanocomposites has been investigated by scanning force microscopy (SFM). The thin films were characterized by different anisotropic features. Micrometric long domains of self-aligned ellipsoidal NPs (tens of nanometers in size) have been observed, together with bendable micrometric long homogeneous nanofibers (NFs). The film structures were strongly dependent on the Co/surfactant ratio and, by increasing the Co percentage, the system was forced towards the formation of mutually connected superstructures consisting of anisotropic bands of self-aligned NFs and anisotropic 2D close packed Co-NP super-lattices. Transmission electron microscopy (TEM) showed that the NPs observed by SFM are in effect composed of almost spherical and oxygen-free cobalt nanoparticles, 1-3 nm in size, which typically assemble in larger ellipsoidal systems tens of nanometers in size. Magnetic force microscopy (MFM) demonstrates the magnetic response of these thin films, highlighting the different behavior (attractive/repulsive) of the Co-NPs aggregates towards the oscillating magnetized tip. The above structural findings have been interpreted in terms of nanostructures/matrix interaction along with a fine balance between short-range isotropic repulsions, van der Waals attractions and long-range anisotropic magnetic interactions.
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页数:9
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