Co supported on N and S dual-doped reduced graphene oxide as highly active oxygen-reduction catalyst for direct ethanol fuel cells

被引:23
|
作者
Fajardo, S. [1 ]
Ocon, P. [2 ]
Rodriguez, J. L. [1 ]
Pastor, E. [1 ]
机构
[1] Univ La Laguna, Dept Quim, Inst Mat & Nanotecnol, POB 456, San Cristobal la Laguna 38200, Santa Cruz de T, Spain
[2] Univ Autonoma Madrid, Dept Quim Fis Aplicada, C-Francisco Tom & Valiente 7, Madrid 28049, Spain
关键词
Direct ethanol fuel cell; Oxygen reduction reaction; Reduced graphene oxide; Heteroatom-doped graphene materials; non; noble metal catalyst; EFFICIENT ELECTROCATALYST; COBALT OXIDE; NITROGEN; CARBON; PLATINUM; SULFUR; COMPOSITE; EVOLUTION; ANION;
D O I
10.1016/j.cej.2023.142053
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Oxygen reduction reaction (ORR) is one of the key features for the efficient functioning of several energy con -version devices such as fuel cells, appearing the necessity of development of new low-cost catalyst materials. Heteroatom-doped carbon materials have attracted attention in this field due to its physicochemical and elec-tronic properties. In this work, a nitrogen and sulfur doped material with anchored Co3O4 nanoparticles (Co/SN-rGO) is proposed as cathode catalyst for direct ethanol fuel cells (DEFCs) and results are compared with different doped graphene nanomaterials (GMs). The effect of the heteroatoms and cobalt oxide nanoparticles in the final efficiency was studied. Synthesized materials were characterized and the activity of Co/SN-rGO and GMs for the ORR was studied. Co/SN-rGO presents high ORR performance in terms of onset potential (Eonset), 0.86 V (vs RHE) and half-wave potential (E1/2) 0.72 V (vs RHE). Tafel analysis shows 60 mV dec-1 at low overpotential for potential dependent ORR mechanism. Besides, when Co/SN-rGO performance is evaluated in a DEFC using a fuel cell test station, main results indicate higher catalytic activity, stability, and ethanol tolerance of Co/SN-rGO in comparison to a carbon-supported Pt catalyst.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] A Highly Active Oxygen Reduction Composite Electrocatalyst of Fe3C with a N, F Dual-Doped Carbon Layer Hide
    Zhang, Hui-Juan
    Jia, Li
    Zhang, Yujing
    Ma, Zi-Feng
    Xue, Yuhua
    Zheng, Shiyou
    Zhang, Jiujun
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2021, 168 (05)
  • [42] Synergistic coupling of P-doped Pd4S nanoparticles with P/S-co-doped reduced graphene oxide for enhanced alkaline oxygen reduction
    Zhang, Mei
    Xu, You
    Zhang, Hugang
    Duan, Zhongyao
    Ren, Tianlun
    Wang, Ziqiang
    Li, Xiaonian
    Wang, Liang
    Wang, Hongjing
    CHEMICAL ENGINEERING JOURNAL, 2022, 429
  • [43] Chemically controlled in-situ growth of cobalt oxide microspheres on N,S-co-doped reduced graphene oxide as an efficient electrocatalyst for oxygen reduction reaction
    Khandelwal, Mahima
    Chandrasekaran, Sundaram
    Hur, Seung Hyun
    Chung, Jin Suk
    JOURNAL OF POWER SOURCES, 2018, 407 : 70 - 83
  • [44] Biomolecule-assisted synthesis of porous PtPd alloyed nanoflowers supported on reduced graphene oxide with highly electrocatalytic performance for ethanol oxidation and oxygen reduction
    Lv, Jing-Jing
    Wisitruangsakul, Nattawadee
    Feng, Jiu-Ju
    Luo, Jun
    Fang, Ke-Ming
    Wang, Ai-Jun
    ELECTROCHIMICA ACTA, 2015, 160 : 100 - 107
  • [45] N-Doped Carbon Nanofibers and Carbon Nanotubes-Encapsulated CoNi Alloy as Highly Active Oxygen Reduction Catalysts for Direct Methanol Fuel Cells
    Wang, Le
    Guo, Shiquan
    Yu, Shuyan
    Shi, Tianjiao
    Chen, Fei
    Guo, Man
    Zhang, Chong
    Li, Congju
    ENERGY TECHNOLOGY, 2024, 12 (07)
  • [46] Reduced graphene oxide supported Ni@Au@Pd core@bishell nanoparticles as highly active electrocatalysts for ethanol oxidation reactions and alkaline direct bioethanol fuel cells applications
    Wang, Fang
    Qiao, Jinshuo
    Wang, Jun
    Wu, Haitao
    Yue, Xinyang
    Wang, Zhenhua
    Sun, Wang
    Sun, Kening
    ELECTROCHIMICA ACTA, 2018, 271 : 1 - 9
  • [47] An Efficient Electrocatalyst based on Platinum Incorporated into N,S co-doped Porous Graphene for Oxygen Reduction Reaction in Microbial Fuel Cell
    Hassani, S. Sadegh
    Ganjali, M. R.
    Samiee, L.
    Rashidi, A. M.
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2018, 13 (11): : 11001 - 11015
  • [48] N, S co-doped carbon spheres with highly dispersed CoO as non-precious metal catalyst for oxygen reduction reaction
    Chen, Linlin
    Guo, Xingpeng
    Zhang, Guoan
    JOURNAL OF POWER SOURCES, 2017, 360 : 106 - 113
  • [49] Iron/iron carbide coupled with S, N co-doped porous carbon as effective oxygen reduction reaction catalyst for microbial fuel cells
    Li, Baitao
    Li, Qun
    Wang, Xiujun
    ENVIRONMENTAL RESEARCH, 2023, 228
  • [50] Contribution of B,N-co-doped reduced graphene oxide as a catalyst support to the activity of iridium oxide for oxygen evolution reaction†
    Joshi, Prerna
    Yadav, Rohit
    Hara, Masanori
    Inoue, Tetsunari
    Motoyama, Yukihiro
    Yoshimura, Masamichi
    JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (14) : 9066 - 9080