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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Phosphorylated multiwalled carbon nanotube-cyclodextrin polymer: Synthesis, characterisation and potential application in water purification
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Phosphorylated multiwalled carbon nanotube-cyclodextrin polymer: Synthesis, characterisation and potential application in water purification

机译:磷酸化多壁碳纳米管-环糊精聚合物:合成,表征及在水净化中的潜在应用

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摘要

Multiwalled carbon nanotubes were synthesised by the nebulised spray pyrolysis method and purified to remove amorphous carbon and fullerenes. The purified multiwalled carbon nanotubes were oxidised using a 3:1 H2SO4/HNO3 mixture to introduce carboxylic groups and to a smaller extent hydroxyl groups on the walls of the carbon nanotubes. Subsequently, the oxidised carbon nanotubes were chlorinated using oxalyl chloride to generate acyl chloride groups through which phosphorylation took place. 4-Aminophenyl methylphosphonate was attached to the multiwalled carbon nanotubes via an ami-dation reaction. FT-IR and XPS confirmed the presence of P=O, P—O and P—C—P functional groups in the phosphorylated carbon nanotubes. Polymerisation of the phosphorylated carbon nanotubes with cydodextrins was achieved using hexaroethylene diisocyanate as a Afunctional linker. Surface morphology of the polymer was investigated by SEM while FT-IR was used to confirm the polymerisation reaction. Moreover, the thermal stability of the polymer was probed using TGA while BET was employed to determine the surface area and pore volume of the polymer. Furthermore, the polymer was tested for the removal of cobalt and 4-chlorophenol from synthetic aqueous solutions of the pollutants. The polymer displayed potential as an adsorbent for both cobalt and 4-chlorophenol.
机译:通过喷雾雾化热解法合成多壁碳纳米管,并纯化以除去无定形碳和富勒烯。使用3:1 H2SO4 / HNO3混合物将纯化的多壁碳纳米管氧化,以在碳纳米管的壁上引入羧基和较小程度的羟基。随后,使用草酰氯对氧化的碳纳米管进行氯化,以生成酰氯基团,通过该酰氯基团进行磷酸化。 4-氨基苯基甲基膦酸酯通过酰胺化反应连接到多壁碳纳米管。 FT-IR和XPS证实在磷酸化的碳纳米管中存在P = O,PO和OCP官能团。使用六亚乙基二异氰酸酯作为A功能连接基可以实现磷酸化碳纳米管与环糊精的聚合。通过SEM研究聚合物的表面形态,同时使用FT-IR确认聚合反应。而且,使用TGA探测聚合物的热稳定性,同时采用BET确定聚合物的表面积和孔体积。此外,测试了该聚合物以从污染物的合成水溶液中去除钴和4-氯苯酚。该聚合物显示出作为钴和4-氯苯酚的吸附剂的潜力。

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