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Revealing the truncated conical geometry of nanochannels in anodic aluminium oxide membranes

机译:揭示了截锥形几何的在阳极氧化铝膜纳米通道

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摘要

Anodic aluminium oxide (AAO) membranes with self-ordered nanochannels have become promising candidates for applications in the aspects such as structural coloration, photonic crystals, upconversion luminescence and nanofluidic transport. Also, self-ordered AAO membranes have been extensively used for the fabrication of functional nanostructures such as nanowires, nanotubes, nanoparticles, nanorods and nanopillars. Geometries of nanochannels are crucial for the applications of AAO membranes as well as controlling growth (e.g., nucleation, direction and morphology) and in applications (e.g., optics, magnetics, thermoelectrics, biology, medicine, sensing, and energy conversion and storage) of the functional nanostructures fabricated via AAO template-based methods. However, observation of whole nanochannels with nanometer-resolution in thick AAO membranes remains a fundamental challenge, and the nanochannel geometry has not yet been sufficiently elucidated. Here, for the first time, we use depth-profiling transmission electron microscopy to reveal the truncated conical geometry of whole nanochannels of 70 μm in length. Such shape nonuniformity of the nanochannels leads to different reflectance properties of the different depths of the nanochannels along their long axis for one AAO membrane, which suggests that the nonuniformity result in some effects on applications of the nanostructures. Furthermore, we introduce a shape factor to evaluate the shape nonuniformity and demonstrate that the nonuniformity can be remarkably removed by an effective etching method based on a temperature gradient regime.
机译:阳极氧化铝(氧化铝)膜self-ordered纳米通道已经成为有前途的候选应用程序等方面光子晶体的结构色,上转换发光和奈米流体交通工具。被广泛用于制造功能纳米结构,如纳米线、纳米管,纳米颗粒、纳米棒和nanopillars。阳极氧化铝膜的应用程序的关键以及控制增长(如成核,方向和形态)和应用程序(例如,光学、磁学、热电技术生物学、医学、遥感、和能量转换和存储)功能纳米结构通过阳极氧化铝模板的方法制造的。然而,观察整个纳米通道nanometer-resolution阳极氧化铝膜厚仍然是一个根本性的挑战,纳米通道几何尚未充分阐明。时间,我们使用depth-profiling传播电子显微镜,揭示了截断整个纳米通道的锥形几何70μm在长度。纳米通道导致不同的反射不同深度的属性纳米通道沿着长轴的氧化铝膜,这表明不均匀性导致一些对应用程序的影响纳米结构。因素评价不均匀性和形状证明的不均匀性明显被有效的腐蚀方法基于温度梯度政权。

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