Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction
Graphene-supported NiMo and CoMo carbides with monodisperse feature were prepared and their electrocatalytic activity toward for the ORR was investigated. The NiMo carbide/G and CoMo carbide/G are found to be different in main carbide species (i.e., MoC and Mo2C, respectively) and in carbide particl...
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sg-ntu-dr.10356-860212021-01-08T06:29:38Z Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction Yang, Huanping Liu, Jilei Wang, Jin Poh, Chee Kok Zhou, Weijiang Lin, Jianyi Shen, Zexiang School of Mechanical and Aerospace Engineering School of Physical and Mathematical Sciences Energy Research Institute @ NTU (ERI@N) Electrocatalytic Graphene Graphene-supported NiMo and CoMo carbides with monodisperse feature were prepared and their electrocatalytic activity toward for the ORR was investigated. The NiMo carbide/G and CoMo carbide/G are found to be different in main carbide species (i.e., MoC and Mo2C, respectively) and in carbide particle size distribution. The ORR tests revealed that CoMo carbide/G exhibit better electrocatalytic performance than NiMo carbide/G in terms of on-set potential, limiting current density and durability. Our present results may open new way for the synthesis of molybdenum carbides, and also suggested that strategies for tuning the molybdenum carbide species within bi-metallic carbides may lead to further enhancements in ORR activity. MOE (Min. of Education, S’pore) 2017-10-17T08:43:23Z 2019-12-06T16:14:31Z 2017-10-17T08:43:23Z 2019-12-06T16:14:31Z 2016 Journal Article Yang, H., Liu, J., Wang, J., Poh, C. K., Zhou, W., Lin, J., et al. (2016). Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction. Electrochimica Acta, 216, 246-252. 0013-4686 https://hdl.handle.net/10356/86021 http://hdl.handle.net/10220/43920 10.1016/j.electacta.2016.09.023 en Electrochimica Acta © 2016 Elsevier Ltd. |
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Electrocatalytic Graphene Yang, Huanping Liu, Jilei Wang, Jin Poh, Chee Kok Zhou, Weijiang Lin, Jianyi Shen, Zexiang Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction |
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Graphene-supported NiMo and CoMo carbides with monodisperse feature were prepared and their electrocatalytic activity toward for the ORR was investigated. The NiMo carbide/G and CoMo carbide/G are found to be different in main carbide species (i.e., MoC and Mo2C, respectively) and in carbide particle size distribution. The ORR tests revealed that CoMo carbide/G exhibit better electrocatalytic performance than NiMo carbide/G in terms of on-set potential, limiting current density and durability. Our present results may open new way for the synthesis of molybdenum carbides, and also suggested that strategies for tuning the molybdenum carbide species within bi-metallic carbides may lead to further enhancements in ORR activity. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Yang, Huanping Liu, Jilei Wang, Jin Poh, Chee Kok Zhou, Weijiang Lin, Jianyi Shen, Zexiang |
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Article |
author |
Yang, Huanping Liu, Jilei Wang, Jin Poh, Chee Kok Zhou, Weijiang Lin, Jianyi Shen, Zexiang |
author_sort |
Yang, Huanping |
title |
Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction |
title_short |
Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction |
title_full |
Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction |
title_fullStr |
Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction |
title_full_unstemmed |
Electrocatalytically Active Graphene supported MMo Carbides (M=Ni, Co) for Oxygen Reduction Reaction |
title_sort |
electrocatalytically active graphene supported mmo carbides (m=ni, co) for oxygen reduction reaction |
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2017 |
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https://hdl.handle.net/10356/86021 http://hdl.handle.net/10220/43920 |
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1688665351392329728 |