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Ag nanoparticles-anchored reduced graphene oxide catalyst for oxygen electrode reaction in aqueous electrolytes and also a non-aqueous electrolyte for Li-O2 cells

机译:Ag纳米颗粒固定的还原型氧化石墨烯催化剂,用于水性电解质中的氧电极反应,以及用于Li-O2电池的非水性电解质

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摘要

Silver nanoparticles-anchored reduced graphene oxide (Ag-RGO) is prepared by simultaneous reduction of graphene oxide and Ag~+ ions in an aqueous medium by ethylene glycol as the reducing agent. Ag particles of average size of 4.7 nm were uniformly distributed on the RGO sheets. Oxygen reduction reaction (ORR) is studied on Ag-RGO catalyst in both aqueous and non-aqueous electrolytes by using cyclic voltammetry and rotating disk electrode techniques. As the interest in non-aqueous electrolyte is to study the catalytic performance of Ag-RGO for rechargeable Li-O2 cells, these cells are assembled and characterized. Li-O2 cells with Ag-RGO as the oxygen electrode catalyst are subjected to charge-discharge cycling at several current densities. A discharge capacity of 11950 mA h g~(-1) (11.29 mA h cm~(-2)) is obtained initially at low current density. Although there is a decrease in the capacity on repeated discharge-charge cycling initially, a stable capacity is observed for about 30 cycles. The results indicate that Ag-RGO is a suitable catalyst for rechargeable Li-O2 cells.
机译:通过用乙二醇作为还原剂在水性介质中同时还原氧化石墨烯和Ag〜+离子,制备了纳米银锚定的还原氧化石墨烯(Ag-RGO)。平均尺寸为4.7 nm的Ag颗粒均匀地分布在RGO板上。利用循环伏安法和转盘电极技术,研究了Ag-RGO催化剂在水性和非水性电解质中的氧还原反应(ORR)。由于对非水电解质的兴趣是研究Ag-RGO对可充电Li-O2电池的催化性能,因此对这些电池进行了组装和表征。以Ag-RGO作为氧电极催化剂的Li-O2电池在几种电流密度下进行充放电循环。最初在低电流密度下获得了11950 mA h g〜(-1)(11.29 mA h cm〜(-2))的放电容量。尽管最初在重复的放电-充电循环中容量减小,但是在大约30个循环中观察到稳定的容量。结果表明,Ag-RGO是适用于可充电Li-O2电池的催化剂。

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