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A new approach for synthesis of ZnO nanorod flowerets and subsequent pure free-standing ZnO nanorods

机译:一种合成ZnO Nanorod Frowtens的新方法和随后的纯纯ZnO纳米棒

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Present work reports the synthesis of ZnO flowerets consisting of nanorod petals of ZnO having a mean aspect ratio similar to 9, supported on micron sized Ni-enriched particles of size in the range of similar to 1-4 mu m and also free-standing pure ZnO nanorods from mechanically alloyed Ni-Zn powder particles via selective leaching in NaOH solution. Optimization of the composition of the initial alloy powder, the concentration of NaOH and time of exposure in the solution was carried out to get to the ZnO flowerets with an increment in the surface area of the order of 400%. The mechanism and reaction chemistry of ZnO nanorods formation and growth were explained based on the evidence of various characterization techniques including inductive coupled plasma mass spectroscopy (ICP-MS) and electrochemical measurements. Free-standing pure ZnO nanorods were also synthesized by ultrasonically breaking the rod petals of ZnO from the base of the flowerets. Free-standing ZnO nanorods have a mean aspect ratio of 8.5 +/- 4, where the length and average diameter are similar to 356 +/- 64 nm and 42 +/- 16 nm, respectively, and the specific surface area of 12.5 m(2) g(-1) with an increment of similar to 650% as compared to the mechanically alloyed powder particle. (C) 2018 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:目前的工作报告了由ZnO的ZnO Forthets的合成,其ZnO的纳米杆花瓣与相似的ZnO的平均纵横比,在类似于1-4μm的范围内的微米尺寸的Ni富集颗粒上的尺寸和自由静态通过机械合金的Ni-Zn粉末颗粒通过选择性浸出在NaOH溶液中的ZnO纳米棒。优化初始合金粉末的组合物,进行溶液中的NaOH浓度和暴露时间的时间,以进入ZnO流花瓣,在表面积为400%的表面积中增加。基于包括电感耦合等离子体质谱(ICP-MS)和电化学测量的各种表征技术的证据,解释了ZnO纳米棒形成和生长的机理和反应化学。通过超声波地破坏来自流花瓣底部的ZnO的杆花瓣,还通过独立纯ZnO纳米棒合成。独立式ZnO纳米棒的平均纵横比为8.5 +/- 4,其中长度和平均直径分别类似于356 +/- 64nm和42 +/- 16nm,并且比表面积为12.5米(2)G(-1)与机械合金粉末颗粒相比,增量与650%相比。 (c)2018年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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