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通过气体聚集团簇源,实现单靶溅射沉积可调成分的合金纳米粒子。

Single target sputter deposition of alloy nanoparticles with adjustable composition via a gas aggregation cluster source.

机构信息

Institute for Materials Science-Chair for Multicomponent Materials, Faculty of Engineering, Christian-Albrechts-University of Kiel, Kaiserstraße 2, D-24143 Kiel, Germany.

出版信息

Nanotechnology. 2017 Apr 28;28(17):175703. doi: 10.1088/1361-6528/aa66ef. Epub 2017 Mar 15.

Abstract

Alloy nanoparticles with variable compositions add a new dimension to nanoscience and have many applications. Here we suggest a novel approach for the fabrication of variable composition alloy nanoparticles that is based on a Haberland type gas aggregation cluster source with a custom-made multicomponent target for magnetron sputtering. The approach, which was demonstrated here for gold-rich AgAu nanoparticles, combines a narrow nanoparticle size distribution with in operando variation of composition via the gas pressure as well as highly efficient usage of target material. The latter is particularly attractive for precious metals. Varying argon pressure during deposition, we achieved in operando changes of AgAu alloy nanoparticle composition of more than 13 at%. The alloy nanoparticles were characterized by x-ray photoelectron spectroscopy and energy dispersive x-ray spectroscopy. The characteristic plasmon resonances of multilayer nanoparticle composites were analyzed by UV-vis spectroscopy. Tuning of the number of particles per unit area (particle densities) within individual layers showed an additional degree of freedom to tailor the optical properties of multilayer nanocomposites. By extension of this technique to more complex systems, the presented results are expected to encourage and simplify further research based on plasmonic multi-element nanoparticles. The present method is by no means restricted to plasmonics or nanoparticle based applications, but is also highly relevant for conventional magnetron sputtering of alloys and can be extended to in operando control of alloy concentration by magnetic field.

摘要

具有可变组成的合金纳米粒子为纳米科学增添了新的维度,并具有许多应用。在这里,我们提出了一种基于 Haberland 型气体聚集簇源和定制多组分磁控溅射靶的制造可变组成合金纳米粒子的新方法。该方法在这里针对富含金的 AgAu 纳米粒子进行了演示,通过气体压力结合原位变化的组成实现了窄的纳米粒子尺寸分布以及高效利用靶材,后者对于贵金属尤为有吸引力。通过在沉积过程中改变氩气压力,我们实现了 AgAu 合金纳米粒子组成的原位变化超过 13 原子%。通过 X 射线光电子能谱和能量色散 X 射线光谱对合金纳米粒子进行了表征。通过紫外-可见光谱分析了多层纳米粒子复合材料的特征等离子体共振。通过调整每个单层中粒子的单位面积数量(粒子密度),可以提供额外的自由度来调整多层纳米复合材料的光学性质。通过将该技术扩展到更复杂的系统,预计所呈现的结果将鼓励并简化基于等离子体多元素纳米粒子的进一步研究。本方法绝不仅限于等离子体学或基于纳米粒子的应用,而且对于常规磁控溅射合金也具有高度相关性,并且可以通过磁场扩展到合金浓度的原位控制。

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