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接枝于氧化石墨烯上的二氧化钛:用于高效低成本质子交换膜的混合纳米填料

Titanium Dioxide Grafted on Graphene Oxide: Hybrid Nanofiller for Effective and Low-Cost Proton Exchange Membranes.

作者信息

Simari Cataldo, Lufrano Ernestino, Godbert Nicolas, Gournis Dimitrios, Coppola Luigi, Nicotera Isabella

机构信息

Department of Chemistry and Chemical Technologies, University of Calabria, 87036 Rende (CS), Italy.

Department of Material Science and Engineering, University of Ioannina, 45110 Ioannina, Greece.

出版信息

Nanomaterials (Basel). 2020 Aug 10;10(8):1572. doi: 10.3390/nano10081572.

Abstract

A nanostructured hybrid material consisting of TiO nanoparticles grown and stabilized on graphene oxide (GO) platelets, was synthesized and tested as nanofiller in a polymeric matrix of sulfonated polysulfone (sPSU) for the preparation of new and low-cost nanocomposite electrolytes for proton exchange membrane fuel cell (PEMFC) applications. GO-TiO hybrid material combines the nanoscale structure, large interfacial area, and mechanical features of a 2D, layered material, and the hygroscopicity properties of ceramic oxides, able to maintain a suitable hydration of the membrane under harsh fuel cell operative conditions. GO-TiO was synthetized through a new, simple, one-pot hydrothermal procedure, while nanocomposite membranes were prepared by casting using different filler loadings. Both material and membranes were investigated by a combination of XRD, Raman, FTIR, thermo-mechanical analysis (TGA and Dynamic Mechanical Analysis) and SEM microscopy, while extensive studies on the proton transport properties were carried out by Electrochemical Impedance Spectroscopy (EIS) measurements and pulse field gradient (PFG) NMR spectroscopy. The addition of GO-TiO to the sPSU produced a highly stable network, with an increasing of the storage modulus three-fold higher than the filler-free sPSU membrane. Moreover, the composite membrane with 3 wt.% of filler content demonstrated very high water-retention capacity at high temperatures as well as a remarkable proton mobility, especially in very low relative humidity conditions, marking a step ahead of the state of the art in PEMs. This suggests that an architecture between polymer and filler was created with interconnected routes for an efficient proton transport.

摘要

一种由生长并稳定在氧化石墨烯(GO)片层上的TiO纳米颗粒组成的纳米结构混合材料被合成,并作为纳米填料在磺化聚砜(sPSU)聚合物基体中进行测试,用于制备用于质子交换膜燃料电池(PEMFC)应用的新型低成本纳米复合电解质。GO-TiO混合材料结合了二维层状材料的纳米级结构、大界面面积和机械特性,以及陶瓷氧化物的吸湿性,能够在苛刻的燃料电池操作条件下保持膜的适当水合作用。GO-TiO通过一种新的、简单的一锅水热法合成,而纳米复合膜则通过使用不同填料负载量的浇铸法制备。通过XRD、拉曼光谱、FTIR、热机械分析(TGA和动态机械分析)和SEM显微镜对材料和膜进行了研究,同时通过电化学阻抗谱(EIS)测量和脉冲场梯度(PFG)NMR光谱对质子传输特性进行了广泛研究。向sPSU中添加GO-TiO产生了高度稳定的网络,储能模量比无填料的sPSU膜提高了三倍。此外,填料含量为3 wt.%的复合膜在高温下表现出非常高的保水能力以及显著的质子迁移率,特别是在非常低的相对湿度条件下,这标志着在质子交换膜方面比现有技术向前迈进了一步。这表明在聚合物和填料之间形成了一种结构,具有相互连接的路径以实现高效的质子传输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/713a/7466480/130c68de6958/nanomaterials-10-01572-sch001.jpg

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