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首页> 外文期刊>ACS applied materials & interfaces >Functionalized Carbon Nanotube via Distillation Precipitation Polymerization and Its Application in Nafion-Based Composite Membranes
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Functionalized Carbon Nanotube via Distillation Precipitation Polymerization and Its Application in Nafion-Based Composite Membranes

机译:蒸馏沉淀聚合功能化碳纳米管及其在基于Nafion的复合膜中的应用

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摘要

The objective of this study is to develop a novel approach to in situ functionalizing multiwalled carbon nanotubes (MYVCNTs) and exploring their application in Nafion-based composite membranes for efficient proton conduction. Covalent grafting of acrylate-modified MWCNTs with poly(methacrylic acid-co-ethylene glycol dimethacrylate), poly(vinylphosphonic acid-co-ethylene glycol dimethacrylate), and sulfonated poly(styrene-co-divinylbenzene) was achieved via surface-initiated distillation precipitation polymerization. The formation of core—shell structure was verified by TEM images, and polymer layers with thickness around 30 nm were uniformly covered on the MWCNTs. The graft yield reached up to 93.3 wt % after 80 min of polymerization. The functionalized CNTs (FCNTs) were incorporated into the Nafion matrix to prepare composite membranes. The influence of various functional groups (—COOH, —PO3H3, and —SO3H) in FCNTs on proton transport of the composite membranes was studied. The incorporation of FCNTs afforded the composite membranes significantly enhanced proton conductivities under reduced relative humidity. The composite membrane containing 5 wt % phosphorylated MWCNTs (PCNTs) showed the highest proton conductivity, which was attributed to the construction of lower-energy-barrier proton transport pathways by PCNTs, and excellent water-retention and proton-conduction properties of the cross-linked polymer in PCNTs. Moreover, the composite membranes exhibited an enhanced mechanical stability.
机译:这项研究的目的是开发一种新颖的方法来原位功能化多壁碳纳米管(MYVCNTs),并探索其在基于Nafion的复合膜中进行有效质子传导的应用。通过表面引发的蒸馏沉淀法将丙烯酸改性的MWCNT与聚(甲基丙烯酸-共-乙二醇二甲基丙烯酸酯),聚(乙烯基膦酸-共-乙二醇二甲基丙烯酸酯)和磺化的聚(苯乙烯-共-二乙烯基苯)共价接枝聚合。核-壳结构的形成已通过TEM图像验证,并且厚度约30 nm的聚合物层均匀地覆盖在MWCNT上。聚合80分钟后,接枝产率达到93.3重量%。将官能化的CNT(FCNT)掺入Nafion基质中以制备复合膜。研究了碳纳米管中各种官能团(-COOH,-PO3H3和-SO3H)对复合膜质子传输的影响。 FCNT的引入使复合膜在降低的相对湿度下显着提高了质子传导性。包含5 wt%磷酸化MWCNTs的复合膜表现出最高的质子传导性,这归因于PCNTs构造了较低能量屏障的质子传输路径,并且具有优异的保水性和交联性。 PCNT中连接的聚合物。此外,复合膜表现出增强的机械稳定性。

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