Synthesis of a small-size metal oxide mixture based on MoOx and NiO with oxygen vacancies as bifunctional electrocatalyst for oxygen reactions

被引:32
作者
Bejar, Jose [1 ]
Alvarez-Contreras, Lorena [2 ]
Guerra-Balcazar, Minerva [3 ]
Ledesma-Garcia, Janet [3 ]
Gerardo Arriaga, Luis [1 ]
Arjona, Noe [1 ]
机构
[1] Ctr Invest & Desarrollo Tecnol Electroquim SC, Pedro Escobedo 76703, Queretaro, Mexico
[2] Ctr Invest Mat Avanzados SC, Complejo Ind Chihuahua, Chihuahua 31136, Chihuahua, Mexico
[3] Univ Autonoma Queretaro, Fac Ingn, Div Invest & Posgrad, Queretaro 76010, Mexico
关键词
Mo-Ni; Bifunctional material; Oxygen reduction; Oxygen evolution; Oxygen vacancies; REDUCTION REACTION; HIGHLY EFFICIENT; FREE CATALYST; EVOLUTION; FE; CO; METHANOL; MN; COBALT; NANOPARTICLES;
D O I
10.1016/j.apsusc.2019.144898
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
In this work, a 3d metal (Ni) and a 4d metal (Mo) were mixed using tungstic acid (TA) as particle size/shape controller to develop a MoOx,-NiO (labelled as Mo-Ni) bifunctional electrocatalyst for oxygen reduction (ORR) and oxygen evolution (OER) reactions in alkaline medium. The formation of MoOx,-NiO was determined by X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD). XPS also revealed that the Mo-Ni material contained oxygen vacancies, while transmission electron microscopy (TEM) indicated that MoOx,-NiO material had sub < 20 nm particle sizes. EDX mapping analysis performed at different electrochemical cycles revealed that the composition (4:1 Mo to Ni) was kept. The Mo-Ni material presented a similar current density than Pt/C during the ORR, displaying a half-wave overpotential of 110 mV. For OER, the Mo-Ni material required 60 mV more energy than a commercial IrO2/C to achieve 10 mA cm(-2), and 170 mV less energy than Pt/C. Additionally, the Mo-Ni material displayed superior durability for both reactions, keeping 92% of its initial current during the ORR after 8 h of operation, and 100% during the OER, being more stable than commercial Pt/C and IrO2/C.
引用
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页数:10
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