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Structure of Cobalt Nanosphere Superlattice Films by Small Angle X-ray Scattering

机译:小角度X射线散射研究钴纳米球超晶格薄膜的结构

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摘要

Cobalt nanocrystals, recently synthesized with narrow size distributions and controlled shapes, organize in a wide range of arrays as a function of shape, size and interparticle interactions. The nanocrystals (NCs) consist of a cobalt metal core with a nominal diameter of 11 nm, and an organic surfactant surface layer with a chain length of ~1.7 nm. For the simplest case (ε-Co nanospheres, super-paramagnetic at room temperature) a hexagonal arrangement of NCs is observed in transmission electron microscope (TEM) images when precipitated from solution onto carbon films. For practical applications and for further understanding of the self-assembly process, long range order of the super lattice must be probed over regions that are greater in extent than may be examined by TEM. Hence, small angle x-ray scattering (SAXS) measurements were performed on cobalt nanospheres randomly dispersed in solution and assembled on glass substrates. Least squares fit to the intensity distribution as a function of the scattering vector q gave an average particle diameter of 11.0 ± 0.8 nm. Structure factor contribution to the intensity profile agrees well with a quasi-random model for scattering from a face centered cubic (FCC) superlattice composed of uniform radius cobalt spheres. The measured nearest neighbor interparticle spacing, 14.1 nm, agrees to within 2% of the predicted value of 14.4 nm based on a free energy model that governs the self-assembly of the nanoparticle system.
机译:最近合成的钴纳米晶体具有窄的尺寸分布和可控的形状,其作为形状,尺寸和粒子间相互作用的函数以各种阵列形式组织。纳米晶体(NCs)由标称直径为11 nm的钴金属核和链长为〜1.7 nm的有机表面活性剂表面层组成。对于最简单的情况(ε-Co纳米球,在室温下为超顺磁性),当从溶液中沉淀到碳膜上时,在透射电子显微镜(TEM)图像中观察到六边形的NCs。对于实际应用和对自组装过程的进一步理解,必须在范围大于可通过TEM检查的区域上探测超晶格的远距离有序。因此,对随机分散在溶液中并组装在玻璃基板上的钴纳米球进行了小角度X射线散射(SAXS)测量。强度分布的最小二乘拟合是散射矢量q的函数,平均粒径为11.0±0.8 nm。结构因子对强度分布的贡献与用于从由均匀半径的钴球组成的面心立方(FCC)超晶格进行散射的准随机模型非常吻合。基于控制纳米粒子系统自组装的自由能模型,测得的最近邻粒子间距为14.1 nm,在14.4 nm预测值的2%之内。

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