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Impact Fragmentation of Metal Nanoparticle Agglomerates

机译:金属纳米颗粒附聚物的冲击破碎

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摘要

Deagglomeration experiments were performed with agglomerates of nanoparticles of Ni and Pt.The fragmentation was induced by high velocity impaction of the agglomerates in a single-stage low pressure impactor and the fragmentation patterns were evaluated by TEM analysis.Weibull statistics are employed for a quantitative description of the fragmentation behavior.This study shows that for well-defined interparticle contacts,the impact fragmentation technique combined with the evaluation according to Weibull statistics,allows the recovery of the expected size dependencies.For Pt and Ag,the adhesion force particle size dependency was dominated by van der Waals forces.In contrast,the adhesion force between Ni particles in the size range from 12-28 nm revealed a much stronger increase with particle size.This phenomenon may be attributed to permanent magnetic dipole moments which are also reflected in the chain-like shape of the agglomerates.For nanoparticle agglomerates with less well-defined contacts,such as those in industrial environments,the method provides a promising application to reveal the bond strength and cohesiveness of nanoparticle powders.
机译:用Ni和Pt纳米颗粒的团聚体进行解团聚实验,在单级低压撞击器中通过团聚体的高速撞击来诱导碎片化,并通过TEM分析评估碎片化模式.Weibull统计用于定量描述研究表明,对于明确定义的粒子间接触,冲击碎片技术与根据Weibull统计进行的评估相结合,可以恢复预期的尺寸依赖性。对于Pt和Ag,粘附力的粒径依赖性为相比之下,尺寸在12-28 nm范围内的Ni颗粒之间的附着力随颗粒尺寸的增加而增强得多。这种现象可能归因于永磁偶极矩,这也反映在附聚物的链状形状。对于定义较不明确的纳米颗粒附聚物接触,例如工业环境中的接触,该方法为揭示纳米颗粒粉末的粘结强度和内聚性提供了有希望的应用。

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