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通过使用氨基芘非共价功能化提高聚酮/石墨烯纳米片层复合材料的分散性和阻隔性能

Improving Dispersion and Barrier Properties of Polyketone/Graphene Nanoplatelet Composites via Noncovalent Functionalization Using Aminopyrene.

机构信息

School of Chemical and Biological Engineering, Seoul National University , Seoul 08826, Korea.

Multifunctional Structural Composite Research Center, Korea Institute of Science and Technology , Jeonbuk 565-905, Korea.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 23;9(33):27984-27994. doi: 10.1021/acsami.7b10474. Epub 2017 Aug 8.

Abstract

A series of polyketone (PK) nanocomposite films with varying content of noncovalently functionalized graphene nanoplatelet with 1-aminopyrene (GNP/APy) is prepared by solution blending with a solvent of hexafluoro-2-propanol. GNP/APy, prepared by a facile method, can effectively induce specific interaction such as hydrogen bonding between the amine functional group of GNP/APy and the carbonyl functional group of the PK matrix. With comparison of GNP and GNP/Py as reference materials, intensive investigation on filler-matrix interaction is achieved. In addition, the dispersion state of the functionalized GNP (f-GNPs; GNP/Py and GNP/APy) in the PK matrix is analyzed by three-dimensional nondestructive X-ray microcomputed tomography, and the increased dispersion state of those fillers results in significant improvement in the water vapor transmission rate (WVTR). The enhancement in WVTR of the PK/GNP/APy nanocomposite film at 1 wt % loading of filler leads to a barrier performance approximately 2 times larger compared to that of PK/GNP nanocomposite film and an approximately 92% reduction in WVTR compared to the case of pristine PK film. We expect that this facile method of graphene functionalization to enhance graphene dispersibility as well as interfacial interaction with the polymer matrix will be widely utilized to expand the potential of graphene materials to barrier film applications.

摘要

一系列聚酮(PK)纳米复合材料薄膜,具有不同含量的非共价功能化石墨烯纳米片与 1-氨基芘(GNP/APy),通过溶液共混制备,使用的溶剂为六氟-2-丙醇。GNP/APy 通过简便的方法制备,能有效地诱导特定相互作用,如 GNP/APy 的氨基官能团与 PK 基质的羰基官能团之间的氢键。通过 GNP 和 GNP/Py 作为参考材料的比较,实现了对填充剂-基质相互作用的深入研究。此外,通过三维无损 X 射线微计算机断层扫描分析了功能化 GNP(f-GNPs;GNP/Py 和 GNP/APy)在 PK 基质中的分散状态,这些填料的分散状态得到改善,导致水蒸气透过率(WVTR)显著提高。在 1wt%的填充剂负载下,PK/GNP/APy 纳米复合材料薄膜的 WVTR 增强,其阻隔性能大约是 PK/GNP 纳米复合材料薄膜的 2 倍,与原始 PK 薄膜相比,WVTR 降低了大约 92%。我们期望这种简便的石墨烯功能化方法能够提高石墨烯的分散性以及与聚合物基质的界面相互作用,将广泛用于拓展石墨烯材料在阻隔膜应用方面的潜力。

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