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Deposition of Thin Alumina Films Containing 3D Ordered Network of Nanopores on Porous Substrates

机译:沉积含有3D有序网络的纳米孔在多孔基板上沉积纳米孔

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摘要

Self-supporting thin films containing nanopores are very promising materials for use for multiple applications, especially in nanofiltration. Here, we present a method for the production of nanomembranes containing a 3D ordered network of nanopores in an alumina matrix, with a diameter of about 1 nm and a body centered tetragonal structure of the network nodes. The material is produced by the magnetron sputtering deposition of a 3D ordered network of Ge nanowires in an alumina matrix, followed by a specific annealing process resulting in the evaporation of Ge. We demonstrate that the films can be easily grown on commercially available alumina substrates containing larger pores with diameters between 20 and 400 nm. We have determined the minimal film thickness needed to entirely cover the larger pores. We believe that these films have the potential for applications in the fields of filtration, separation and sensing.
机译:含有纳米孔的自支撑薄膜是非常有前途的材料,用于多种应用,尤其是纳滤。这里,我们提出了一种用于在氧化铝基质中纳米孔的3D有序网络的纳米膜的制备方法,其直径为约1nm,并且网络节点的身体居中的四边形结构。通过在氧化铝基质中的GE纳米线的3D有序网络的磁控溅射沉积来产生材料,然后产生特定的退火工艺,从而导致GE的蒸发。我们证明,薄膜可以容易地在市售的氧化铝基材上含有较大的孔径,直径在20至400nm之间。我们已经确定了完全覆盖较大孔所需的最小膜厚度。我们认为,这些电影具有过滤,分离和感测领域的应用。

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