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Magnetic field-assisted alignment of graphene oxide nanosheets in a polymer matrix to enhance ionic conduction
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Magnetic field-assisted alignment of graphene oxide nanosheets in a polymer matrix to enhance ionic conduction

Wei-Ting Ma, S. Rajesh Kumar, Chun-Ting Hsu, Chao-Ming Shih, Shiao-Wen Tsai, Chun-Chen Yang, Ying-Ling LiuShingjiang Jessie Lue
Journal of Membrane Science, 卷.563, 頁碼.259-269
10/2018

摘要

Direct methanol alkaline fuel cell (DMAFC) Graphene oxide (GO) Magnetic field (MF) Methanol barrier Polymeric composite Biochemistry Materials Science (all) Physical and Theoretical Chemistry Filtration and Separation
This study aims to elucidate the effect of magnetic graphene oxide (GO) alignment in a polymer matrix on the ionic conduction and methanol barrier properties of the resulting composites. Magnetic iron oxide (Fe 3 O 4 ) nanoparticles were fabricated and anchored on GO nanosheets. The magnetic GO-Fe 3 O 4 nanofillers were incorporated into a quaternized polyvinyl alcohol (QPVA) matrix to form a polymeric composite. By applying a magnetic field (MF) along the in-plane direction during the drying and film formation steps, the GO-Fe 3 O 4 nanosheets were aligned in an orientation parallel to the direction of the MF and connected to each other in elongated domains, as confirmed using transmission electron microscopy, field emission scanning electron microscopy/energy dispersive X-ray spectroscopy mapping, and laser scanning microscopy. The MF-aligned QPVA/GO-Fe 3 O 4 electrolyte possessed higher conductivity and lower permeability than the un-aligned QPVA/GO-Fe 3 O 4 membrane and pristine QPVA film. The aligned QPVA/GO-Fe 3 O 4 composite exhibited a peak power density of 172.4 mW cm −2 at 60 °C, which is higher than those of the composite without the MF treatment (67.7 mW cm −2 ) and the pristine QPVA (50.3 mW cm −2 ). This research demonstrates the extraordinary benefits of MF assisted GO-Fe 3 O 4 nanofillers in facilitating the ion conduction and barrier property of a polymeric composite at 0.1% filler loading.

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