首页> 外文OA文献 >Electrical resistivity as a tool for the characterisation of carbonaceous phases in vapour-grown carbon fibres
【2h】

Electrical resistivity as a tool for the characterisation of carbonaceous phases in vapour-grown carbon fibres

机译:电阻率作为表征气相生长碳纤维中碳相的工具

摘要

By making electrical resistivity measurements as a function of diameter, it has been possible to prove that the kind of carbon fibres grown from a gaseous stage (VGCF), possess a duplex structure. We have found that these fibres present a catalytic phase or core, which shows a higher level of crystalline perfection than the pyrolytic or cortical phase. This is clearly revealed by the high electrical conductivity observed for thin fibres, when compared to thick VGCF. Estimations of electrical resistivity have allowed us to establish that this physical property, for different sorts of VGCF, can be accurately expressed by the rule of mixtures. In the same way, we have noticed that fibres fabricated from acetylene-containing precursor atmospheres show better electrical properties than VGCF grown from standard reactant gases. We have also observed that over-hydrogenation of VGCF, which gives rise to an improvement in mechanical properties, involves a decrease in electrical conductivity. | By making electrical resistivity measurements as a function of diameter, it has been possible to prove that the kind of carbon fibres grown from a gaseous stage (VGCF), possess a duplex structure. We have found that these fibres present a catalytic phase or core, which shows a higher level of crystalline perfection than the pyrolytic or cortical phase. This is clearly revealed by the high electrical conductivity observed for thin fibres, when compared to thick VGCF. Estimations of electrical resistivity have allowed us to establish that this physical property, for different sorts of VGCF, can be accurately expressed by the rule of mixtures. In the same way, we have noticed that fibres fabricated from acetylene-containing precursor atmospheres show better electrical properties than VGCF grown from standard reactant gases. We have also observed that over-hydrogenation of VGCF, which gives rise to an improvement in mechanical properties, involves a decrease in electrical conductivity.
机译:通过测量电阻率随直径的变化,有可能证明从气态(VGCF)生长的碳纤维具有双链结构。我们已经发现,这些纤维具有催化相或核,与热解相或皮质相相比,其表现出更高的结晶完美度。与厚的VGCF相比,细纤维的高电导率清楚地表明了这一点。电阻率的估算使我们能够确定,对于不同种类的VGCF,这种物理性质可以通过混合规则来精确表示。同样,我们已经注意到,由含乙炔的前体气氛制成的纤维比由标准反应物气体生长的VGCF具有更好的电性能。我们还观察到,VGCF的过度氢化会导致机械性能的改善,但会导致电导率降低。 |通过测量电阻率随直径的变化,有可能证明从气态(VGCF)生长的碳纤维具有双链结构。我们已经发现,这些纤维具有催化相或核,与热解相或皮质相相比,其表现出更高的结晶完美度。与厚的VGCF相比,细纤维的高电导率清楚地表明了这一点。电阻率的估算使我们能够确定,对于不同种类的VGCF,这种物理性质可以通过混合规则来精确表示。同样,我们已经注意到,由含乙炔的前体气氛制成的纤维比由标准反应物气体生长的VGCF具有更好的电性能。我们还观察到,VGCF的过度氢化会导致机械性能的改善,但会导致电导率降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号