Guangzhou Key Laboratory for Surface Chemistry of Energy Materials, New Energy Research Institute, College of Environment and Energy, South China University of Technology , Guangzhou 510006, China.
Department of Materials and Chemical Engineering, Ningbo University of Technology , Ningbo 315211, Zhejiang, China.
ACS Appl Mater Interfaces. 2017 Jun 14;9(23):20046-20056. doi: 10.1021/acsami.7b00198. Epub 2017 Jun 5.
Sulfonated holey graphene oxides (SHGOs) have been synthesized by the etching of sulfonated graphene oxides with concentrated HNO under the assistance of ultrasonication. These SHGOs could be used as fillers for the sulfonated aromatic poly(ether ether ketone) (SPEEK) membrane. The obtained SHGO-incorporated SPEEK membrane has a uniform and dense structure, exhibiting higher performance as proton exchange membranes (PEMs), for instance, higher proton conductivity, lower activation energy for proton conduction, and comparable methanol permeability, as compared to Nafion 112. The sulfonated graphitic structure of the SHGOs is believed to be one of the crucial factors resulting in the higher performance of the SPEEK/SHGO membrane, since it could increase the local density of the -SOH groups in the membrane and induce a strong interfacial interaction between SHGO and the SPEEK matrix, which improve the proton conductivity and lower the swelling ratio of the membrane, respectively. Additionally, the proton conductivity of the membrane could be further enhanced by the presence of the holes in the graphitic planes of the SHGOs, since it provides an additional channel for transport of the protons. When used, direct methanol fuel cell with the SPEEK/SHGO membrane is found to exhibit much higher performance than that with Nafion 112, suggesting potential use of the SPEEK/SHGO membrane as the PEMs.
磺化多孔石墨烯氧化物 (SHGO) 通过超声辅助下浓 HNO 刻蚀磺化石墨烯氧化物合成。这些 SHGO 可用作磺化芳族聚醚醚酮 (SPEEK) 膜的填料。所得到的含 SHGO 的 SPEEK 膜具有均匀致密的结构,作为质子交换膜 (PEM) 表现出更高的性能,例如更高的质子电导率、更低的质子传导活化能和可比的甲醇渗透率,与 Nafion 112 相比。SHGO 的磺化石墨结构被认为是导致 SPEEK/SHGO 膜具有更高性能的关键因素之一,因为它可以增加膜中 -SOH 基团的局部密度,并在 SHGO 和 SPEEK 基质之间产生强烈的界面相互作用,从而分别提高质子电导率和降低膜的溶胀率。此外,膜的质子电导率可以通过 SHGO 石墨平面中的孔的存在进一步提高,因为它为质子传输提供了额外的通道。当使用时,具有 SPEEK/SHGO 膜的直接甲醇燃料电池被发现表现出比具有 Nafion 112 的更高的性能,表明 SPEEK/SHGO 膜作为 PEM 的潜在用途。