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Designing Neat and Composite Carbon Nanotube Materials by Porosimetric Characterization

机译:通过孔隙率表征设计纯净的复合碳纳米管材料

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摘要

We propose a porosimetry-based method to characterize pores formed by carbon nanotubes (CNTs) in the CNT agglomerates for designing neat CNT-based materials and composites. CNT agglomerates contain pores between individual CNTs and/or CNT bundles (micropore < 2 nm, mesopores 2–50 nm, and macropores > 50 nm). We investigated these pores structured by CNTs with different diameters and number of walls, clarifying the broader size distribution and the larger volume with increased diameters and number of walls. Further, we demonstrated that CNT agglomerate structures with different bulk density were distinguished depending on the pore sizes. Our method also revealed that CNT dispersibility in solvent correlated with the pore sizes of CNT agglomerates. By making use of these knowledge on tailorable pores for CNT agglomerates, we successfully found the correlation between electrical conductivity for CNT rubber composites and pore sizes of CNT agglomerates. Therefore, our method can distinguish diverse CNT agglomerate structures and guide pore sizes of CNT agglomerates to give high electrical conductivity of CNT rubber composites.
机译:我们提出一种基于孔隙率法的方法来表征由CNT附聚物中的碳纳米管(CNT)形成的孔,以设计纯净的CNT基材料和复合材料。 CNT附聚物在单个CNT和/或CNT束之间包含孔(微孔ore2 nm,中孔2–50 nm和大孔> 50 nm)。我们研究了由具有不同直径和壁数的CNT构成的这些孔,从而阐明了随着直径和壁数的增加,更宽的尺寸分布和更大的体积。此外,我们证明了具有不同堆积密度的CNT附聚物结构可以根据孔径进行区分。我们的方法还表明,CNT在溶剂中的分散性与CNT附聚物的孔径有关。通过利用有关CNT附聚物的可定制孔的这些知识,我们成功地发现了CNT橡胶复合材料的电导率与CNT附聚物的孔径之间的相关性。因此,我们的方法可以区分各种CNT团聚体结构,并指导CNT团聚体的孔径,以提供高导电率的CNT橡胶复合材料。

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