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首页> 外文期刊>Composite Structures >Effects of dispersants and defoamers on the enhanced electrical performance by carbon nanotube networks embedded in cement-matrix composites
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Effects of dispersants and defoamers on the enhanced electrical performance by carbon nanotube networks embedded in cement-matrix composites

机译:分散剂和消泡剂对水泥 - 基质复合材料嵌入碳纳米管网络增强电性能的影响

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摘要

Cementitious composites incorporating mull-walled carbon nanotubes (MWCNTs) were fabricated in this study. The effects of additive dispersants and defoamer concentrations on the electrical characteristics of the composites were experimentally investigated. Both electrically conductive (i.e., PEDOT:PSS) and insulating (i.e., SDBS) dispersants were used to enhance the colloidal dispersibility of the MWCNTs. Observations indicate that MWCNT networks embedded in cementitious composites with junctions supported by a conductive dispersant demonstrated a seven-fold enhancement in electrical conductivity. Additionally, the use of defoamers resulted in the suppressed formation of voids during the hydration process. Conductivity measurements showed that voids are disadvantageous as they result in the isolation of MWCNT networks, which are responsible for inferior electrical conductivity. Furthermore, observations revealed that the percolation threshold could be shifted by controlling the formation of voids; thus, percolation can be achieved at lower MWCNT concentrations (i.e., 0.125-0.25 wt%) than in those samples produced without defoaming additives (i.e., 0.25-0.35 wt%).
机译:在本研究中制造了包含母壁碳纳米管(MWCNT)的水泥复合材料。实验研究了附加分散剂和消泡剂浓度对复合材料的电特性的影响。导电(即PEDOT:PSS)和绝缘(即,SDBS)分散剂既用于增强MWCNT的胶体分散性。观察结果表明,嵌入具有由导电分散剂支撑的结的水泥复合材料中的MWCNT网络表明了导电性的七倍的增强。另外,消泡剂的使用导致在水合过程中抑制空隙的形成。电导率测量表明,空隙是不利的,因为它们导致MWCNT网络的隔离,其负责较差的导电性。此外,观察结果表明,通过控制空隙的形成可以移动渗透阈值;因此,可以在低MwCNT浓度(即0.125-0.25wt%)下渗透而不是在没有消泡添加剂的情况下生产的那些样品(即0.25-0.35wt%)。

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