首页> 外文会议>International Carbon Conference(Carbon 2007); 20070715-20; Seattle,WA(US) >FORMATION OF RHOMBOHEDRAL CRYSTALLITE IN PLATELET GRAPHITE NANOFIBERS
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FORMATION OF RHOMBOHEDRAL CRYSTALLITE IN PLATELET GRAPHITE NANOFIBERS

机译:片状石墨纳米纤维中菱形晶体的形成

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Graphite crystallizes in both hexagonal (2H) and rhombohedral (3R) systems. It is known that the 3R modification in graphite occurs locally by grinding of 2H crystal, and disappears by annealing at high temperature or decomposition of its intercalation compounds [Boehm 1955]. It was reported that the 3R phase content in artificial graphite, which was estimated from the integrated intensities of X-ray powder patterns, was increased by increasing the grinding time using ball-mill and saturated ca. 30% even at prolonged period [Inagaki 1973]. These observations suggest that the 3R stacking of carbon layers is meta-stable phase. Recently, the 3R modification in graphite has attracted attention as the cathode material for the Li-ion battery and as an intermediate for the cubic-diamond formation from graphite [Flandrois 1996, Guerin 1999, Yang 2001].In this study, we found that the graphite nanofibers (GNFs) with high content of 3R phase could be synthesized by CVD method from CO/H_2 mixture with Fe ultra fine particles as a catalyst. The stability of 3R phase in GNFs was also examined.
机译:石墨在六角形(2H)和菱形(3R)系统中均会结晶。众所周知,石墨中的3R改性是通过2H晶体的研磨而局部发生的,而由于高温退火或其嵌入化合物的分解而消失[Boehm 1955]。据报道,通过增加球磨机和饱和Ca 2+的研磨时间,可以提高人造石墨中3R相的含量,这是由X射线粉末图案的综合强度估算得出的。甚至长时间也可以达到30%[Inagaki 1973]。这些观察结果表明碳层的3R堆叠是亚稳定相。近年来,石墨中的3R修饰作为锂离子电池的正极材料和由石墨形成立方金刚石的中间体已引起关注[Flandrois 1996,Guerin 1999,Yang 2001]。在这项研究中,我们发现利用Fe /超细颗粒作为催化剂,通过CO / H_2混合气的CVD方法可以合成出高含量3R相的石墨纳米纤维。还检查了GNR中3R相的稳定性。

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