HEXAMETHYLENETETRAMINE (C6H12N4) INDUCED HIGH-DENSITY NITROGEN DOPED REDUCED GRAPHENE: A NOVEL SONO-MICROWAVE ASSISTED SYNTHESIS AND CHARACTERIZATION TOWARDS RENEWABLE ENERGIES APPLICATIONS.

F. Oladoyinbo
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Abstract

Development of low-cost electrocatalytic material for hydrogen evolution and oxygen reduction reaction (HER and ORR) is the main requirement for many renewable energies like the, Proton Exchange Membrane Fuel Cell (PEMFC) and Proton Exchange Membrane Electrolysers (PEME) Photo-electrochemical Water Splitting (PEWS) technologies. Herein, we report a novel, simple, economical and rapid one-pot Sono-microwave assisted synthesis of nitrogen doped graphene (NG) from graphene oxide in presence of a nitrogen precursor (Hexamethylenetetramine). The obtained NG was optimized by varying the ratio of GO to Hexamethylenetetramine to find the optimized N content in the catalyst and investigated as electrocatalyst for the ORR. Transmission electronic microscopy (TEM) and field emission scanning electronic microscopy (FE-SEM) micrograph of optimized NG showed well exfoliated graphene oxide with few layers of graphene while the X-ray photoelectron spectroscopy (XPS) depicts that about 11 % of nitrogen doping into the graphene lattice active forms of pyrrolic-N, pyridinic-N, and graphitic-N in 1:3NG catalyst is 55.00, 33.69, and 11.31 % respectively. Demonstrating the potential attributes of the Material in electrocatalytic renewable energy applications.
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六亚甲基四胺(c6h12n4)诱导高密度氮掺杂还原石墨烯:一种新的声纳微波辅助合成和表征,可再生能源应用。
开发低成本的析氢和氧还原反应电催化材料(HER和ORR)是许多可再生能源的主要需求,如质子交换膜燃料电池(PEMFC)和质子交换膜电解槽(PEME)光电化学水分解(PEWS)技术。本文报道了一种新颖、简单、经济、快速的单锅微波辅助合成方法,该方法由氧化石墨烯在氮前驱体(六亚甲基四胺)的存在下合成氮掺杂石墨烯(NG)。通过改变氧化石墨烯与六亚甲基四胺的比例对得到的氧化石墨烯进行优化,以确定催化剂中N的最佳含量,并研究其作为ORR的电催化剂。透射电镜(TEM)和场发射扫描电镜(FE-SEM)显示,氧化石墨烯剥离良好,石墨烯层数较少;x射线光电子能谱(XPS)显示,在1:3NG催化剂中,约11%的氮掺杂到石墨烯晶格活性形式pyrroic - n、pyridinic-N和石墨- n中,分别为55.00%、33.69%和11.31%。展示了该材料在电催化可再生能源应用中的潜在属性。
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