Preparation of self-assembled cobalt nanocrystal arrays

J.S Yin , Z.L Wang
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引用次数: 28

Abstract

Processing of self-assembled magnetic nanocrystals has vitally scientific and technological interests. In this paper, three different kinds of self-assemblies of cobalt nanocrystals were processed using particles processed by thermal decomposition of cobalt carbonyl in toluene. In case 1, two-dimensional self-assembly of cobalt nanocrystals with an average particle size of 9.2 nm and polydispersity of 9% has been formed. In case 2, macroscopic whisker structures composed of self assembled cobalt nanocrystals (with an average size of 8 nm) were formed during the thermal decomposition under an externally applied magnetic field. The whiskers can be aligned in the longitudinal axis direction during drying using an external magnetic field. In case 3, one-dimensionally ordered, densely packed self-assemblies have also been prepared using cobalt nanocrystals with irregular shape and larger particle sizes (10–20 nm). The formation of these different structures is attributed to the magnetic properties of cobalt particles with different sizes.

自组装钴纳米晶阵列的制备
自组装磁性纳米晶体的制备具有重要的科学和技术意义。本文利用羰基钴在甲苯中热分解后的颗粒,制备了三种不同的钴纳米晶自组装体。在case 1中,形成了平均粒径为9.2 nm、多分散度为9%的钴纳米晶体的二维自组装。在案例2中,在外加磁场的作用下,在热分解过程中形成了由自组装钴纳米晶体组成的宏观晶须结构(平均尺寸为8 nm)。在干燥过程中,利用外部磁场可使晶须沿纵轴方向排列。在案例3中,使用形状不规则、粒径较大(10 - 20nm)的钴纳米晶体也制备了一维有序、密集排列的自组装体。这些不同结构的形成归因于不同尺寸钴颗粒的磁性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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