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首页> 外文期刊>RSC Advances >Synthesis of ferrocenyl hyper-branched polyethylene for non-covalent dispersion of multi-walled carbon nanotubes and fabrication of flexible carbon nanotubes-based conductive films
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Synthesis of ferrocenyl hyper-branched polyethylene for non-covalent dispersion of multi-walled carbon nanotubes and fabrication of flexible carbon nanotubes-based conductive films

机译:用于多壁碳纳米管非共价分散的二茂铁基超支化聚乙烯的合成及基于柔性碳纳米管的导电膜的制备

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摘要

Ferrocenyl hyper-branched polyethylene (HBPE-g-PFcEMA) was synthesized by chain-walking polymerization followed by atom transfer radical polymerization, and then characterized by H-1 NMR and GPC. HBPE-g-PFcEMA was subsequently employed to disperse multi-walled carbon nanotubes (MWCNTs) in CHCl3. It was found that the MWCNTs were efficiently dispersed by HBPE-g-PFcEMA at a concentration of 150.4 mg L-1. The dispersibility of the MWCNTs in the presence of HBPE-g-PFcEMA was evaluated by TEM and SEM. The pp stacking interactions between the MWCNTs and HBPE-g-PFcEMA were confirmed by UV-vis spectroscopy. Fabrication of the flexible conductive film by spin-coating the MWCNTs/HBPE-g-PFcEMA dispersion on a PET substrate was explored. The resultant conductive film showed good conductivity (conductivity = 943.4 S cm(-1)). Furthermore, its good conductivity was retained even after being twisted or bent. Thus, the conductive film might find its potential application in flexible electronics.
机译:二链烯基二茂铁基超支化聚乙烯(HBPE-g-PFcEMA)是通过链走聚合,原子转移自由基聚合合成的,然后通过H-1 NMR和GPC表征。 HBPE-g-PFcEMA随后用于将多壁碳纳米管(MWCNT)分散在CHCl3中。发现MWCNTs被HBPE-g-PFcEMA有效分散为150.4mg L-1。通过TEM和SEM评价了在HBPE-g-PFcEMA存在下MWCNTs的分散性。紫外可见光谱证实了MWCNT与HBPE-g-PFcEMA之间的pp堆积相互作用。探索了通过将MWCNTs / HBPE-g-PFcEMA分散体旋涂在PET基板上来制造柔性导电膜的方法。所得的导电膜显示出良好的导电性(导电率= 943.4 S cm(-1))。此外,即使在扭曲或弯曲之后仍保持其良好的导电性。因此,导电膜可能会在柔性电子产品中找到潜在的应用。

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