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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Growth of NaFe4P12 skutterudite single crystalline nanosprings synthesized through a hydrothermal-reduction-alloying method
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Growth of NaFe4P12 skutterudite single crystalline nanosprings synthesized through a hydrothermal-reduction-alloying method

机译:水热还原合金法合成NaFe4P12方钴矿单晶纳米弹簧的生长

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摘要

NaFe4P12 nanosprings were synthesized using a hydrothermal method at 170 degreesC for 24 h. The nanosprings are 1000-5000 nm in length and 200-1000 mn in diameter and consist of coiled nanobelts of 80-1-50 nm in width and 20-50 nm. in thickness. With an increase in the annealing time, the nanospring grows as a macrorod with a multilayered helical tubular structure. X-ray diffraction (XRD) patterns indicate that the nanosprings have the skutterudite crystal structure with cell parameter a = 7.782 Angstrom. Electron diffraction (ED) and high-resolution transmission electron microscopy (HRTEM) prove that the nanobelts grow along the (111) plane and that their growth direction is not parallel to the [ 110] direction in the growth plane. A possible growth process for NaFe4P12 nanosprings is suggested.
机译:NaFe4P12纳米弹簧是使用水热方法在170摄氏度下合成24小时。纳米弹簧的长度为1000-5000 nm,直径为200-1000 mn,由宽度为80-1-50 nm和20-50 nm的卷曲纳米带组成。厚度。随着退火时间的增加,纳米弹簧作为具有多层螺旋管状结构的大棒生长。 X射线衍射(XRD)图谱表明纳米弹簧具有方晶石晶体结构,单元参数a = 7.782埃。电子衍射(ED)和高分辨率透射电子显微镜(HRTEM)证明,纳米带沿(111)平面生长,并且其生长方向与生长平面中的[110]方向不平行。建议NaFe4P12纳米弹簧可能的生长过程。

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