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首页> 外文期刊>ACS applied materials & interfaces >Tuning the Surface Properties of Graphene Oxide by Surface-Initiated Polymerization of Epoxides: An Efficient Method for Enhancing Gas Separation
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Tuning the Surface Properties of Graphene Oxide by Surface-Initiated Polymerization of Epoxides: An Efficient Method for Enhancing Gas Separation

机译:通过环氧化物的表面引发聚合调节石墨烯氧化物的表面性质:一种增强气体分离的有效方法

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摘要

Here, we describe an in situ approach for growing polyepoxides from the surfaces of graphene oxide (GO) using a surface-initiated polymerization reaction. The polymerization methodology is facile and general as a broad range of epoxides carrying various functional groups have been successfully polymerized by simply adding GO powders in the epoxide monomers. The resultant polyepoxide grafted GO are found to show enhanced dispersibility in various common solvents and to exhibit increased d-spacing between the basal planes. In particular, grafting poly(2,3-epoxy-1-propanol) (PEP) to GO results in a composite (i.e., GO-g-PEP) that is dispersible in water and miscible with polyether block amide, i.e., Pebax MH 1657. Preliminary studies have indicated the membranes prepared using Pebax/GO-g-PEP composites exhibit enhanced CO2 permeabilities and selectivities in comparison to H-2, O-2, or N-2. The excellent performance in gas separation is attributed to the layered structure of the GO-g-PEP sheets with enlarged d-spacing and the functional groups present on the PEP chains grafted to the surfaces of GO sheets.
机译:在这里,我们使用表面引发的聚合反应描述从石墨烯(GO)表面中生长聚环氧化物的原位方法。聚合方法是容易的,并且通过在环氧化物单体中加入GO粉末,已经成功地聚合了携带各种官能团的宽范围的环氧化物。发现所得的聚环氧化物接枝液相对于各种常见溶剂中的增强的分散性并表现出基础平面之间的增加的D-间距。特别地,嫁接聚(2,3-环氧-1-丙醇)(PEP)脱离可在水中分散的复合材料(即GO-G-PEP)和与聚醚嵌段酰胺混溶,即Pebax MH 1657.初步研究表明了使用PeBax / Go-G-PEP复合材料制备的膜表现出增强的CO 2渗透性和选择性与H-2,O-2或N-2相比。气体分离的优异性能归因于具有扩大的D-间隔的Go-G-Pep薄片的层状结构,并且在移植到Go纸张表面的Pep链中存在的官能团。

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