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增强型碳纳米管/TiC 混杂纤维的力学强度和导电性。

Enhanced mechanical strength and electrical conductivity of carbon-nanotube/TiC hybrid fibers.

机构信息

Soochow University, Suzhou 215006, PR China.

出版信息

Nanoscale. 2013 Aug 7;5(15):6923-7. doi: 10.1039/c3nr01857a.

Abstract

We report the synthesis of carbon nanotube/TiC hybrid fibers using a polymer-assisted chemical solution approach. Ti metal ions are bound to aqueous polyethyleneimine (PEI) to form precursor solution. Amphiphilic PEI with Ti easily permeates the CNT fibers. Upon annealing in a controlled atmosphere, a homogeneous TiC network is formed in the CNT fibers. The obtained CNT/TiC hybrid fibers show prominent enhancement in mechanical strength and electrical conductivity. The tensile strength and conductivity of CNT/TiC fibers can be improved to 0.67 GPa and 1650 S cm(-1) at room temperature, respectively. More importantly, a tensile modulus as high as 420 GPa has been achieved for the CNT/TiC fibers. Analysis shows that the cross-linking matrix of hard TiC plays a significant role in the improvement of mechanical strength. Furthermore, the electrons are transported in the CNT/TiC fiber by a three dimensional hopping mechanism.

摘要

我们报告了使用聚合物辅助化学溶液法合成碳纳米管/TiC 杂化纤维。Ti 金属离子与水合聚乙烯亚胺(PEI)结合形成前体溶液。具有 Ti 的两亲性 PEI 很容易渗透到 CNT 纤维中。在受控气氛中退火后,在 CNT 纤维中形成均匀的 TiC 网络。所得到的 CNT/TiC 杂化纤维在机械强度和导电性方面表现出显著的增强。在室温下,CNT/TiC 纤维的拉伸强度和电导率可分别提高到 0.67 GPa 和 1650 S cm(-1)。更重要的是,CNT/TiC 纤维的拉伸模量高达 420 GPa。分析表明,硬 TiC 的交联基质在提高机械强度方面起着重要作用。此外,电子在 CNT/TiC 纤维中通过三维跳跃机制传输。

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