Al2O3基共金属陶瓷纳米颗粒膜的结构特征和磁性能

G. Cuong, N. Tuan, N. Anh, Dinh Van Tuong, Nguyen Anh Tue, N. Nga, Do Phuong Lien
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引用次数: 4

摘要

不同制备方法制备的磁性微、纳米颗粒材料已广泛应用于磁光响应研究。然而,其中似乎还没有关于用溅射技术制备金属和绝缘体的磁性纳米颗粒薄膜的研究。本文介绍并讨论了用共溅射技术沉积Co和Co .的氧化铝()基颗粒共金属陶瓷薄膜的制备、结构特征和磁性能。通过改变铁磁(Co)原子分数,从0.04到0.63,显示了这些薄膜沉积的几个主要特征。x射线衍射的结构特征证实了这些薄膜为金属陶瓷型结构。此外,磁性行为呈现出从顺磁性到超顺磁性再到类铁磁性的转变,表明Co组分在Co团簇或纳米颗粒中聚集和生长。这些结果表明,制备的Co薄膜具有典型的颗粒状共金属陶瓷特征,其中Co磁性纳米颗粒分散在陶瓷基体中。这种纳米材料可以很好地应用于自旋等离子体的磁光响应研究。
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Structural Characteristics and Magnetic Properties of Al2O3 Matrix-Based Co-Cermet Nanogranular Films
Magnetic micro- and nanogranular materials prepared by different methods have been used widely in studies of magnetooptical response. However, among them there seems to be nothing about magnetic nanogranular thin films prepared by a cosputtering technique for both metals and insulators till now. This paper presented and discussed preparation, structural characteristics, and magnetic properties of alumina ( ) matrix-based granular Co-cermet thin films deposited by means of the cosputtering technique for both Co and . By varying the ferromagnetic (Co) atomic fraction, , from 0.04 to 0.63, several dominant features of deposition for these thin films were shown. Structural characteristics by X-ray diffraction confirmed a cermet-type structure for these films. Furthermore, magnetic behaviours presented a transition from paramagnetic- to superparamagnetic- and then to ferromagnetic-like properties, indicating agglomeration and growth following Co components of Co clusters or nanoparticles. These results show a typical granular Co-cermet feature for the Co- thin films prepared, in which Co magnetic nanogranules are dispersed in a ceramic matrix. Such nanomaterials can be applied suitably for our investigations in future on the magnetooptical responses of spinplasmonics.
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