首页> 外文期刊>Advanced Functional Materials >In Situ Generated Gas Bubble-Directed Self-Assembly: Synthesis, and Peculiar Magnetic and Electrochemical Properties of Vertically Aligned Arrays of High-Density CO_3O_4 Nanotubes
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In Situ Generated Gas Bubble-Directed Self-Assembly: Synthesis, and Peculiar Magnetic and Electrochemical Properties of Vertically Aligned Arrays of High-Density CO_3O_4 Nanotubes

机译:原位产生的气泡定向自组装:高密度CO_3O_4纳米管的垂直排列阵列的合成以及奇特的磁和电化学性质。

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摘要

A novel and versatile gas bubble induced self-assembly technique is developed for the one-step fabrication of vertically aligned polycrystalline Co_3O_4 nanotube arrays (NTAs) by the rapid thermal decomposition of Co(NO_3)_2-6H_2O on a flat substrate. In this protocol, the in situ generation and release of gas bubbles, which can be regulated by elaborately adjusting the kinetic factors such as reaction time, decomposition temperature and pressure as well as the content of the chemically adsorbed water, play a vital role in the formation of the CO_3O_4 NTAs. Due to the shape anisotropy, ordered hierarchically porous structure and high surface area, the as-obtained CO_3O_4 NTAs show unique magnetic properties of a low Neel temperature and a large exchange bias field, as well as an initial discharge capacity up to 1293 mAh-g ~(-1) at 35 mA-g~(-1) and the retention of a charge capacity as high as 895.4 mAh-g~(-1) after 10 cycles. This endows them with important potential use in magnetic shielding, magnetic recording media, and lithium ion batteries, etc. Due to the simplicity of the self-assembly method, this process is applicable to the large-scale production of the CO_3O_4 NTAs, and may be extended to other materials.
机译:通过在平坦基板上快速热分解Co(NO_3)_2-6H_2O,开发了一种新颖的,气泡诱导的自组装技术,用于一步制备垂直排列的多晶Co_3O_4纳米管阵列(NTA)。在该协议中,可以通过精心调节动力学因素(例如反应时间,分解温度和压力以及化学吸附水的含量)来调节气泡的原位产生和释放,这在反应中起着至关重要的作用。 CO_3O_4 NTA的形成。由于形状各向异性,有序的分层多孔结构和高表面积,所获得的CO_3O_4 NTA表现出低Neel温度和大交换偏压场的独特磁性,初始放电容量高达1293 mAh-g 〜(-1)在35 mA-g〜(-1)时,经过10个循环后,充电容量保持高达895.4 mAh-g〜(-1)。这使它们在磁屏蔽,磁记录介质和锂离子电池等方面具有重要的潜在用途。由于自组装方法的简便性,该工艺适用于大规模生产CO_3O_4 NTA,并且可能扩展到其他材料。

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  • 来源
    《Advanced Functional Materials》 |2013年第19期|2406-2414|共9页
  • 作者单位

    State Key Laboratory of Advanced Technology for Materials Synthesis and Processing Wuhan University of Technology No.122, Luoshi Road, Wuhan 430070, P. R. China,College of Chemistry and Life Sciences Zhejiang Normal University jinhua 321004, P. R.China;

    State Key Laboratory of Advanced Technology for Materials Synthesis and Processing Wuhan University of Technology No.122, Luoshi Road, Wuhan 430070, P. R. China;

    State Key Laboratory of Advanced Technology for Materials Synthesis and Processing Wuhan University of Technology No.122, Luoshi Road, Wuhan 430070, P. R. China;

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