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Nanoporous thin films with controllable nanopores processed from vertically aligned nanocomposites

机译:从垂直排列的纳米复合材料加工出具有可控纳米孔的纳米多孔薄膜

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摘要

Porous thin films with ordered nanopores have been processed by thermal treatment on vertically aligned nanocomposites (VAN), e.g., (BiFeO _3)_(0.5):(Sm_2O_3)_(0.5) VAN thin films. Uniformly distributed nanopores with an average diameter of 60nm and 150nm were formed at the bottom and top of the nanoporous films, respectively. Controllable porosity can be achieved by adjusting the microstructure of VAN (BiFeO_3):(Sm_2O_3) thin films and the annealing parameters. In situ heating experiments within a transmission electron microscope (TEM) column at temperatures from 25 to 850 °C, provides significant insights into the phase transformation, evaporation and structure reconstruction during the annealing. The in situ experiments also demonstrate the possibility of processing vertically aligned nanopores (VANP) with one phase stable in a columnar structure. These nanoporous thin films with controllable pore size and density could be promising candidates for thin film membranes and catalysis for fuel cell and gas sensor applications.
机译:已经通过在垂直取向的纳米复合材料(VAN)例如(BiFeO _3)_(0.5):( Sm_2O_3)_(0.5)VAN薄膜上进行热处理来加工具有规则纳米孔的多孔薄膜。在纳米多孔膜的底部和顶部分别形成平均直径为60nm和150nm的均匀分布的纳米孔。通过调节VAN(BiFeO_3):( Sm_2O_3)薄膜的微观结构和退火参数可以实现可控制的孔隙率。在25到850°C的温度下在透射电子显微镜(TEM)柱内进行的原位加热实验为退火过程中的相变,蒸发和结构重建提供了重要的见识。原位实验还证明了加工具有在柱状结构中稳定的一相的垂直排列的纳米孔(VANP)的可能性。这些具有可控制的孔径和密度的纳米多孔薄膜可能是薄膜薄膜以及用于燃料电池和气体传感器应用的催化的有希望的候选者。

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