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Novel method to prepare multiwalled carbon nanotube/poly(dimethyl siloxane) (MWCNT/PDMS) non-conducting composites

机译:制备多壁碳纳米管/聚(二甲基硅氧烷)(mWCNT / pDms)非导电复合材料的新方法

摘要

In this study a new method of carbon nanotube (CNT) incorporation was employed for the preparation of ultraviolet (UV) curable CNT filled poly (dimethyl siloxane) (PDMS) composites. The composites were designed to contain loadings of CNT above the percolation threshold without becoming conductive due to a localized distribution of CNT. Ultrasonicated and dispersed multiwalled CNTs were mixed with short chain ,- vinyl terminated PDMS. When the whole mixture containing dispersed CNT and short chain PDMS was irradiated with UV radiation in presence of deficient amount of hexa functional thiol PDMS crosslinker and a photoinitiator, hyperbranced PDMS layer was formed over the CNTs. The prepared hyperbranched CNTs were mixed in different weight ratios (0.33%, 0.66%, 1%) with long chain ,- vinyl terminated PDMS and crosslinked subsequently with the same hexa functional thiol PDMS via UV photoinitiated thiol-ene chemistry to obtain the networks. Rheology of the prepared networks showed a gradual decrease in storage modulus (G’) in the entire frequency range as the amount of CNT was increased due to a reduction in crosslinking density imposed by the CNT was increased due to a reduction in crosslinking density imposed by the CNTs. Dielectric spectroscopy measurements showed an increasing trend in permittivity in all the composites with increasing CNT loadings and AC conductivity measurements confirmed non-percolating behavior of the prepared composites.
机译:在这项研究中,采用了一种新的掺入碳纳米管(CNT)的方法来制备可紫外(UV)固化的CNT填充的聚(二甲基硅氧烷)(PDMS)复合材料。复合材料被设计为包含超过渗滤阈值的CNT负载,而不会由于CNT的局部分布而变得导电。将超声分散的多壁碳纳米管与短链α,β-乙烯基封端的PDMS混合。当在不足量的六官能硫醇PDMS交联剂和光引发剂的存在下,用紫外线辐照包含分散的CNT和短链PDMS的整个混合物时,在CNT上形成了超支化PDMS层。将所制备的超支化碳纳米管以不同的重量比(0.33%,0.66%,1%)与长链α,β-乙烯基封端的PDMS混合,然后通过紫外光引发的硫醇-烯化学方法与相同的六官能硫醇PDMS交联,得到网络。所制备网络的流变性显示,在整个频率范围内,随着CNT数量的增加,储能模量(G')逐渐降低,这是由于CNT施加的交联密度降低所致,而CNT的增加是由于CNT施加的交联密度降低所致。碳纳米管。介电谱测量结果显示,随着CNT负载的增加,所有复合材料的介电常数都有增加的趋势,而AC电导率测量结果证实了所制备复合材料的非渗滤行为。

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