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Combinatorial fabrication of composite nanorods using oblique angle co-deposition

机译:斜角共沉积复合纳米棒的组合制备

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We demonstrate that oblique angle co-deposition can be used as a versatile combinatory nanofabrication technique to generate a library of nanomaterials. Using the Cu-Fe2O3 system as an example, by carefully characterizing the vapor plumes of the source materials, a composition map can be generated, which is used to design the locations of all the substrate holders. The resulting nanostructures at different locations show different thickness, morphology, crystallinity, composition, as well as inhomogeneity in microstructures, and material maps of all these structural parameters are established. By further oxidizing or reducing the composite nanostructures, their properties-such as band gap, photocatalytic performance, and magnetic properties-can be easily linked to their composition and other structural parameters. Optimal materials for photocatalytic and magnetic applications are efficiently identified. It is expected that oblique angle co-deposition and its variations could become the most powerful combinatory nanofabrication technique for nanomaterial survey.
机译:我们证明斜角共沉积可以用作一种通用的组合纳米加工技术,以生成纳米材料库。以Cu-Fe2O3系统为例,通过仔细表征原材料的蒸气羽流,可以生成组成图,该图用于设计所有基板支架的位置。所得的纳米结构在不同位置显示出不同的厚度,形态,结晶度,组成以及微观结构中的不均匀性,并建立了所有这些结构参数的材料图。通过进一步氧化或还原复合纳米结构,可以很容易地将其性能(例如带隙,光催化性能和磁性能)与其组成和其他结构参数联系起来。有效地确定了用于光催化和磁性应用的最佳材料。预计斜角共沉积及其变化将成为用于纳米材料研究的最强大的组合纳米加工技术。

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