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Microwave-Assisted Synthesis of Reduced Graphene Oxide/SnO2 Nanocomposite for Oxygen Reduction Reaction in Microbial Fuel Cells

机译:微波辅助合成还原型氧化石墨烯/ SnO2纳米复合材料用于微生物燃料电池中的氧还原反应

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摘要

We report on an easy, fast, eco-friendly, and reliable method for the synthesis of reduced graphene oxide/SnO2 nanocomposite as cathode material for application in microbial fuel cells (MFCs). The material was prepared starting from graphene oxide that has been reduced to graphene during the hydrothermal synthesis of the nanocomposite, carried out in a microwave system. Structural and morphological characterizations evidenced the formation of nanocomposite sheets, with SnO2 crystals of few nanometers integrated in the graphene matrix. Physico-chemical analysis revealed the formation of SnO2 nanoparticles, as well as the functionalization of the graphene by the presence of nitrogen atoms. Electrochemical characterizations put in evidence the ability of such composite to exploit a cocatalysis mechanism for the oxygen reduction reaction, provided by the presence of both SnO2 and nitrogen. In addition, the novel composite catalyst was successfully employed as cathode in seawater-based MFCs, giving electrical performances comparable to those of reference devices employing Pt as catalyst.
机译:我们报告了一种简单,快速,环保和可靠的方法,用于合成还原的氧化石墨烯/ SnO2纳米复合材料,并将其用作微生物燃料电池(MFCs)的阴极材料。该材料从氧化石墨烯开始制备,该氧化石墨烯在微波系统中进行水热合成纳米复合材料的过程中被还原成石墨烯。结构和形态学特征证明形成了纳米复合片,石墨烯基质中整合了几纳米的SnO2晶体。物理化学分析揭示了SnO2纳米颗粒的形成,以及存在氮原子时石墨烯的功能化。电化学表征证明了这种复合物利用SnO2和氮的存在提供的共催化机理进行氧还原反应的能力。此外,新型复合催化剂已成功用作海水基MFC的阴极,其电性能可与采用Pt作为催化剂的参考设备相媲美。

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