Carbon-nitrogen-metal material as a high performing oxygen evolution catalyst

被引:0
|
作者
Fruehwald, Holly M. [1 ]
Zenkina, Olena V. [1 ]
Easton, E. Bradley [1 ]
机构
[1] Univ Ontario, Ontario Tech Univ, Inst Technol, Fac Sci, 2000 Simcoe St North, Oshawa, ON L1G 0C5, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
HYDROGEN EVOLUTION; GRAPHENE OXIDE; NANOPARTICLES; HYDROXIDES; REDUCTION;
D O I
10.1039/d2cy00473a
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
Novel oxygen evolution catalysts were prepared through diazonium coupling chemistry to covalently modify Vulcan carbon via terpyridine (tpy) motifs followed by coordination of non-precious transition metals (Ni, Co) to the tpy-ligand on the surface support. This resulted in highly active catalysts that demonstrate low overpotentials for the V-tpy-Ni catalyst of 313 mV at 10 mA cm(-2), and stable long-term performance over 26 hours of continual testing.
引用
收藏
页码:3102 / 3105
页数:4
相关论文
共 50 条
  • [31] Metal-organic framework-derived sulfur and nitrogen dual-doped bimetallic carbon nanotubes as electrocatalysts for oxygen evolution reaction
    Chen, Hongxu
    Li, Yuwen
    Liu, Huajian
    Ji, Qinghong
    Zou, Lijia
    Gao, Junkuo
    JOURNAL OF SOLID STATE CHEMISTRY, 2020, 288
  • [32] Constructed Interfacial Oxygen-Bridge Chemical Bonding in Core-Shell Transition Metal Phosphides/Carbon Hybrid Boosting Oxygen Evolution Reaction
    Zhong, Xia
    Huang, Keke
    Zhang, Yuan
    Wang, Ying
    Feng, Shouhua
    CHEMSUSCHEM, 2021, 14 (10) : 2188 - 2197
  • [33] Preparation of Metal-Free Nitrogen-Doped Carbon Material and Its Catalytic Performance
    Wang, Xuan
    Yang, Lei
    Cai, Ke Ying
    Zhou, Ying Mei
    Wang, Peng
    Song, Ming
    BULLETIN OF CHEMICAL REACTION ENGINEERING AND CATALYSIS, 2019, 14 (01) : 105 - 111
  • [34] Nitrogen and high oxygen-containing metal-free porous carbon nanosheets for supercapacitor and oxygen reduction reaction applications
    Veeramani, Vediyappan
    Raghavi, Govindan
    Chen, Shen-Ming
    Madhu, Rajesh
    Sivakumar, Mani
    Tashima, Daisuke
    Hung, Chin-Te
    Liu, Shang-Bin
    NANO EXPRESS, 2020, 1 (01):
  • [35] Highly Ordered Mesoporous Carbon Nitride Nanoparticles with High Nitrogen Content: A Metal-Free Basic Catalyst
    Jin, Xin
    Balasubramanian, Veerappan V.
    Selvan, Sakthivel T.
    Sawant, Dhanashri P.
    Chari, Murugulla A.
    Lu, G. Q.
    Vinu, Ajayan
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2009, 48 (42) : 7884 - 7887
  • [36] Hierarchical Metal-Free Nitrogen-Doped Porous Graphene/Carbon Composites as an Efficient Oxygen Reduction Reaction Catalyst
    Men, Bao
    Sun, Yanzhi
    Li, Mujie
    Hu, Chaoqun
    Zhang, Man
    Wang, Linan
    Tang, Yang
    Chen, Yongmei
    Wan, Pingyu
    Pan, Junqing
    ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (02) : 1415 - 1423
  • [37] Carbon nanofiber-supported tantalum oxides as durable catalyst for the oxygen evolution reaction in alkaline media
    Ruiz-Cornejo, J. C.
    Vivo-Vilches, J. F.
    Sebastian, D.
    Martinez-Huerta, M. V.
    Lazaro, M. J.
    RENEWABLE ENERGY, 2021, 178 : 307 - 317
  • [38] Nanoconfined Synthesis of Nitrogen-Rich Metal-Free Mesoporous Carbon Nitride Electrocatalyst for the Oxygen Evolution Reaction
    Wahab, Md A.
    Joseph, Jickson
    Atanda, Luqman
    Sultana, Ummul K.
    Beltramini, Jorge N.
    Ostrikov, Kostya
    Will, Geoffrey
    O'Mullane, Anthony P.
    Abdala, Ahmed
    ACS APPLIED ENERGY MATERIALS, 2020, 3 (02): : 1439 - 1447
  • [39] A Highly-Efficient Oxygen Evolution Electrocatalyst Derived from a Metal-Organic Framework and Ketjenblack Carbon Material
    Oeztuerk, Secil
    Moon, Gun-hee
    Spiess, Alex
    Budiyanto, Eko
    Roitsch, Stefan
    Tueysuez, Harun
    Janiak, Christoph
    CHEMPLUSCHEM, 2021, 86 (08): : 1106 - 1115
  • [40] Co/FeC core-nitrogen doped hollow carbon shell structure with tunable shell-thickness for oxygen evolution reaction
    Zhang, Qi
    Fu, Mingxuan
    Ning, Guyang
    Sun, Yuena
    Wang, Haiyang
    Fan, Xinyu
    Lu, Haijun
    Zhang, Yufan
    Wang, Huan
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2020, 580 (580) : 794 - 802