Electrochemical Oxygen Evolution Reaction on NixFe3-xO4 (0 ≤ x ≤ 1.0) in Alkaline Medium at 25ºC

IF 2.2 4区 工程技术 Q3 ELECTROCHEMISTRY
Pankaj Chauhan, B. Lal
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引用次数: 0

Abstract

Spinel ferrites (Ni x Fe 3-x O 4 ; x = 0.25, 0.5, 0.75 and 1.0) have been prepared at 550ºC by egg white auto-combustion route using egg white at 550ºC and characterized by physicochemical (TGA, IR, XRD, and SEM) and electrochemical (CV and Tafel polarization) techniques. The presence of characteristic vibration peaks in FT-IR and reflection planes in XRD spectra confirmed the formation of spinel ferrites. The prepared oxides were transformed into oxide film on glassy carbon electrodes by coating oxide powder ink using the nafion solution and investigated their electrocatalytic performance for OER in an alkaline solution. The cyclic voltammograms of the oxide electrode did not show any redox peaks in oxygen overpotential regions. The iR-free Tafel polarization curves exhibited two Tafel slopes (b 1 = 59–90 mV decade -1 and b 2 = 92– 124 mV decade -1 ) in lower and higher over potential regions, respectively. Ni-substitution in oxide matrix significantly improved the electrocatalytic activity for oxygen evolution reaction. Based on the current density for OER, the 0.75 mol Ni-substituted oxide electrode was found to be the most active electrode among the prepared oxides and showed the highest value of apparent current density (~9 mA cm -2 at 0.85 V) and lowest Tafel slope (59 mV decade -1 ). The OER on oxide electrodes occurred via the formation of chemisorbed intermediate on the active sites of the oxide electrode and follow the sec-ond-order mechanism.
NixFe3-xO4(0≤x≤1.0)在25℃碱性介质中的电化学析氧反应
采用蛋清自燃烧法在550℃下制备了尖晶石铁氧体(Ni x Fe 3-x O 4;x=0.25、0.5、0.75和1.0),并通过物理化学(TGA、IR、XRD和SEM)和电化学(CV和Tafel极化)技术进行了表征。FT-IR和XRD光谱中反射面的特征振动峰的存在证实了尖晶石铁氧体的形成。通过用nafion溶液涂覆氧化物粉末油墨,将制备的氧化物在玻碳电极上转化为氧化物膜,并研究了它们在碱性溶液中对OER的电催化性能。氧化物电极的循环伏安图在氧过电位区域中没有显示任何氧化还原峰。无iR的Tafel极化曲线在较低和较高过电位区域分别表现出两个Tafel斜率(b1=59–90 mV decade-1和b2=92–124 mV decade-1)。氧化物基体中的Ni取代显著提高了析氧反应的电催化活性。基于OER的电流密度,发现0.75mol Ni取代的氧化物电极是所制备的氧化物中最活性的电极,并且显示出最高的表观电流密度值(在0.85V时~9mA cm-2)和最低的Tafel斜率(59mV decel-1)。氧化物电极上的OER是通过在氧化物电极的活性位点上形成化学吸附的中间体而发生的,并且遵循二阶机制。
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来源期刊
CiteScore
6.30
自引率
8.10%
发文量
44
期刊介绍: Covering fields: - Batteries and Energy Storage - Biological Electrochemistry - Corrosion Science and Technology - Electroanalytical Chemistry and Sensor Technology - Electrocatalysis - Electrochemical Capacitors & Supercapcitors - Electrochemical Engineering - Electrodeposition and Surface Treatment - Environmental Science and Technology - Fuel Cells - Material Electrochemistry - Molecular Electrochemistry and Organic Electrochemistry - Physical Electrochemistry - Solar Energy Conversion and Photoelectrochemistry
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