Iron-based perovskites-reduced graphene oxide as possible cathode materials for rechargeable iron-ion battery

电解质 煅烧 材料科学 电池(电) 氧化物 阴极 石墨烯 锂离子电池 纳米复合材料 无机化学 化学工程 阳极 氧化铁 化学 纳米技术 电极 冶金 催化作用 功率(物理) 物理化学 工程类 物理 量子力学 生物化学
作者
Hagar K. Hassan,Ahmed Galal,Nada F. Atta,Timo Jacob
出处
期刊:Journal of Alloys and Compounds [Elsevier]
卷期号:870: 159383-159383 被引量:4
标识
DOI:10.1016/j.jallcom.2021.159383
摘要

In this manuscript, A-Fe-based perovskites (A = Sm, Nd, La and Sr)/RGO (AFOG) are reported for the first time as good cathode material candidates for post-lithium ion battery, namely rechargeable iron ion battery, Ni-Fe battery or super iron battery. AFOG materials are successfully prepared by the microwave-assisted graphene oxide (GO) method. Highly crystalline perovskites of less than 10 nm in diameter were successfully prepared without the need of any calcination step at elevated temperatures. The specific capacities of the resulting AFOG nanostructures were studied at relatively high charging/discharging rates in 1.0 M KOH electrolyte to test their high discharging rate capabilities. It was found that SrFOG provides the highest specific capacity due to the differences in its structure compared to the other AFOG nanocomposites. Upon the addition of 0.3 M K3[Fe(CN)6] to the 1.0 M KOH electrolyte, the specific capacities of AFOG have been greatly improved. A superior enhancement in the specific capacity was achieved with SrFOG that showed 187.5 mA·h·g−1 in 0.3 M K3[Fe(CN)6]/1.0 M KOH compared to 19.6 mA·h·g−1 in 1.0 M KOH at a scan-rate of 2 mV·s−1. Moreover, SrFOG’s specific capacity in 1.0 M KOH-containing ferricyanide showed 58-fold increase at a very high specific current of 10 A·g−1 compared to its value in the ferricyanide-free KOH solution; ca. 97 mAh·g−1 and 1.7 mA·h·g−1, respectively.
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