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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Assembly of tantalum porous films with graded oxidation profile from size-selected nanoparticles
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Assembly of tantalum porous films with graded oxidation profile from size-selected nanoparticles

机译:从尺寸选择的纳米粒子组装具有渐变氧化轮廓的钽多孔膜

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摘要

Functionally graded materials offer a way to improve the physical and chemical properties of thin films and coatings for different applications in the nanotechnology and biomedical fields. In this work, design and assembly of nanoporous tantalum films with a graded oxidation profile perpendicular to the substrate surface are reported. These nanoporous films are composed of size-selected, amorphous tantalum nanoparticles, deposited using a gas-aggregated magnetron sputtering system, and oxidized after coalescence, as samples evolve from mono- to multi-layered structures. Molecular dynamics computer simulations shed light on atomistic mechanisms of nanoparticle coalescence, which govern the films porosity. Aberration- corrected (S) TEM, GIXRD, AFM, SEM, and XPS were employed to study the morphology, phase and oxidation profiles of the tantalum nanoparticles, and the resultant films.
机译:功能梯度材料为纳米技术和生物医学领域的不同应用提供了改善薄膜和涂层的物理和化学性质的方法。在这项工作中,报道了垂直于基底表面具有渐变氧化轮廓的纳米多孔钽薄膜的设计和组装。这些纳米多孔膜由尺寸选择的无定形钽纳米颗粒组成,使用气体聚集的磁控溅射系统沉积,并在聚结后被氧化,因为样品从单层结构演变为多层结构。分子动力学计算机模拟揭示了控制颗粒孔隙率的纳米颗粒聚结的原子机理。像差校正(S)TEM,GIXRD,AFM,SEM和XPS用于研究钽纳米颗粒以及所得薄膜的形貌,相和氧化分布。

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