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首页> 外文期刊>Chemicke Zvesti >Thermal annealing-induced modification of the structure and electrical conductivity of metallic nanotubes embedded in PET track-etched membranes
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Thermal annealing-induced modification of the structure and electrical conductivity of metallic nanotubes embedded in PET track-etched membranes

机译:热退火诱导的PET轨道蚀刻膜嵌入金属纳米管结构和导电性的改变

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摘要

This work is dedicated to developing a simple methodology that allows for the application of a thermal annealing process, which can improve the conductivity of metallic nanostructures, embedded in porous track-etched membranes based on polyethylene terephthalate (PET TeMs), but at the same time, does not compromise the mechanical properties. Zinc, copper, and cobalt nanotubes (NTs) prepared by electrochemical deposition in PET TeMs were annealed at 200 degrees C for different time periods. The effects of annealing treatment on the structural and electrical properties were investigated by scanning electron microscopy, X-ray diffraction, and room-temperature resistance measurements. Choosing the appropriate annealing time for Zn or Cu-NTs allows controlling the formation of an oxide phase in these nanostructures. The presence of the oxide phase in an amount of no more than 10-15 wt% led to a decrease in the resistivity and an increase in the conductivity. Thermal annealing of Co-based NTs changed intensities of the metastable fcc beta-Co and stable hcp alpha-Co phases. The metastable beta-Co phase caused additional defects due to a change in the crystallite size after 90 min of thermal annealing.
机译:这项工作旨在开发一种简单的方法,允许应用热退火过程,这可以提高基于聚对苯二甲酸乙二醇酯(PET TEM)的多孔轨道蚀刻膜的金属纳米结构的导电性,但同时,不损害机械性能。在PET TEM中通过电化学沉积制备的锌,铜和钴纳米管(NTS)在200℃下以不同的时间段退火。通过扫描电子显微镜,X射线衍射和室温电阻测量研究退火处理对结构和电性能的影响。选择Zn或Cu-NT的适当退火时间允许控制这些纳米结构中的氧化物相的形成。氧化物相的存在量不大于10-15wt%导致电阻率降低和导电性的增加。基于Co的NTS的热退火改变了亚稳FCCβ-CO和稳定HCPα-CO相的强度。由于在热退火90分钟后的微晶尺寸的变化,亚稳态β-共相导致额外的缺陷。

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