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Template-assisted fabrication of self-supported 3D functional nanostructure arrays towards high performance devices

机译:模板辅助制造自支持的3D功能纳米结构阵列朝向高性能器件

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Large scale arrays of self-supported 3D functional nanostructures, including nanowire and nanotube arrays, on substrates have attracted considerable amount of interest due to the unique physical properties and many potential applications in areas such as energy storage and energy conversion, electronics, sensing, and bio-medicine. In particular nanoporous anodic aluminum (AAO) oxide templates are ideal candidates to fabricate the desired functional nano-arrays due to the remarkable properties, including structural control in the nanometer regime (i.e., pores size and length), large area patterning, low cost, easy scalability, and good process ability. Here, we will introduce conventional AAO templates with shot range order and AAO templates that were synthesized by an innovative nano-imprint approach and hence exhibit long range order. The fabrication process of nanowire and nanotube arrays in these templates will be introduced on different material systems, using an electrochemical deposition approach and atomic layer deposition.
机译:在基板上,包括纳米线和纳米管阵列,包括纳米线和纳米管阵列的大规模阵列,由于独特的物理性质以及诸如储能和能量转换,电子,感应等领域的许多潜在应用,因此引起了大量的兴趣。生物医学。特别是纳米孔阳极氧化铝(AAO)氧化物模板是理想候选来制造所希望的功能性纳米阵列由于显着的特性,包括在纳米范围(即,孔尺寸和长度)的结构控制,大面积图案化,成本低,简单的可扩展性和良好的工艺能力。在这里,我们将介绍传统的AAO模板,其射击范围顺序和AAO模板通过创新的纳米印记方法合成,因此展示了长距离顺序。使用电化学沉积方法和原子层沉积,将在不同材料系统上引入这些模板中的纳米线和纳米管阵列的制造过程。

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