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Comparative methods for reduction and sulfonation of graphene oxide for fuel cell electrode applications

机译:用于燃料电池电极的氧化石墨烯还原和磺化的比较方法

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Graphene oxide (GO) was synthetized, reduced and further sulfonated for the preparation of electrodes. GO was obtained using modified Hummer's method from graphite flakes. The partial reduction of graphene oxide (rGO) was performed by chemical and thermal process and subsequently functionalized using sulfuric acid or aryl diazonium salt of sulfanilic acid as sulfonating agents to afford rGO-SO3H. The influence of the reduction processes on the sulfonation reactions of rGO was evaluated through XRD, TGA, FT-IR and Raman techniques. Electrochemical properties of both rGO and sulfonated rGO materials as modified glassy carbon electrode were evaluated using a K3FeCN6 solution as a reference redox system. XRD confirmed the partial reduction of GO by two methods and FT-IR demonstrated that -SO3H groups were successfully grafted on GO. VC results confirmed that both reduction and sulfonated methods leads to a better material with superior electrochemical properties compared to GO and rGO. Thermally reduced GO and functionalized with sulfuric acid [rGO(T)-SO3H(1)] showed the best electron transfer activity compared to those chemically reduced or sulfonated with sulfanilic acid. The electrochemical properties observed for rGOT-SO3H(1) suggest than can be a suitable support material of nanoparticles for the preparation of electrodes for fuel cells applications. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氧化石墨烯(GO)被合成,还原并进一步磺化以制备电极。 GO是使用改良的Hummer方法从石墨薄片中获得的。通过化学和热过程进行氧化石墨烯(rGO)的部分还原,然后使用硫酸或磺胺酸的芳基重氮盐作为磺化剂进行官能化,得到rGO-SO3H。通过XRD,TGA,FT-IR和拉曼技术评价了还原过程对rGO磺化反应的影响。使用K3FeCN6溶液作为参考氧化还原系统评估了rGO和磺化rGO材料作为改性玻璃碳电极的电化学性能。 XRD证实了通过两种方法GO的部分还原,并且FT-IR表明-SO 3 H基团成功地嫁接到了GO上。 VC结果证实,与GO和rGO相比,还原法和磺化法均可制得具有更好电化学性能的更好材料。热还原的GO并用硫酸[rGO(T)-SO3H(1)]功能化后,与化学还原或磺胺酸磺酸化的GO相比,电子转移活性最佳。观察到的rGOT-SO3H(1)的电化学性质表明,它可以用作制备燃料电池应用电极的纳米粒子的合适载体材料。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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