Recent developments on iron and nickel-based transition metal nitrides for overall water splitting: A critical review

被引:123
作者
Batool, Mariam [1 ]
Hameed, Arslan [1 ]
Nadeem, Muhammad Arif [1 ,2 ]
机构
[1] Quaid i Azam Univ, Dept Chem, Catalysis & Nanomat Lab 27, Islamabad 45320, Pakistan
[2] Pakistan Acad Sci PAS, 3 Constitut Ave,G-5-2, Islamabad, Pakistan
关键词
Iron; Nickel; Nitride; Electrocatalyst; Water splitting; HYDROGEN EVOLUTION REACTION; OXYGEN REDUCTION REACTION; EFFICIENT BIFUNCTIONAL ELECTROCATALYST; SINGLE-ATOM CATALYSTS; ACTIVE SURFACE SITES; MOLYBDENUM NITRIDES; HIGHLY-EFFICIENT; TITANIUM NITRIDE; RECENT PROGRESS; THIN-FILMS;
D O I
10.1016/j.ccr.2023.215029
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Transition metal nitrides (TMNs) have gained substantial interest to generate hydrogen from direct dissociation of water via catalytic strategy. Due to the unique noble metal like structure, high electric conductivity, corrosion resistance, broad pH stability and probable structural modifications TMNs are gauged as efficient hydrogen evolution reaction (HER), oxygen evolution reaction (OER) and overall water splitting (OWS) electrocatalysts. Iron and nickel based TMNs are considered as ideal electrocatalysts because of the abundance, low cost and high catalytic activity as compared to the expensive benchmark catalysts. However, the single phase TMNs have unsatisfactory performance due to inadequate M-H/M-OH bond strength. Most researchers have focused in designing advanced heterostructures by doping other metals, metallic compounds, and conductive substrates to improve catalytic performance due to the tailored electronic structure to modify M-H/M-OH bond strength, boost electrochemical stability and synergistic effects. In this review, we highlight the recent developments pertaining to Fe and Ni-based TMNs from the stance of advanced nanoarchitecture electrocatalysts for electrochemical water splitting. The key challenges and future perspectives confronting expansion of water splitting catalysts are critiqued. (c) 2023 Elsevier B.V. All rights reserved.
引用
收藏
页数:29
相关论文
共 220 条
  • [1] Ambient-Pressure XPS Study of a Ni-Fe Electrocatalyst for the Oxygen Evolution Reaction
    Ali-Loeytty, Harri
    Louie, Mary W.
    Singh, Meenesh R.
    Li, Lin
    Casalongue, Hernan G. Sanchez
    Ogasawara, Hirohito
    Crumlin, Ethan J.
    Liu, Zhi
    Bell, Alexis T.
    Nilsson, Anders
    Friebel, Daniel
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2016, 120 (04) : 2247 - 2253
  • [2] Hydrogen Evolution Reaction in an Alkaline Solution via ε-Fe3N Phase Formation on AISI 316 Stainless Steel by Plasma Treatment
    Allami, Shrok
    Jalal, Noor M.
    [J]. SURFACE ENGINEERING AND APPLIED ELECTROCHEMISTRY, 2019, 55 (01) : 77 - 83
  • [3] Controllable tuning of Fe-N nanosheets by Co substitution for enhanced oxygen evolution reaction
    An, Li
    Feng, Jianrui
    Zhang, Yu
    Zhao, Yong-Qing
    Si, Rui
    Wang, Gui-Chang
    Cheng, Fangyi
    Xi, Pinxian
    Sun, Shouheng
    [J]. NANO ENERGY, 2019, 57 : 644 - 652
  • [4] Precision and correctness in the evaluation of electrocatalytic water splitting: revisiting activity parameters with a critical assessment
    Anantharaj, S.
    Ede, S. R.
    Karthick, K.
    Sankar, S. Sam
    Sangeetha, K.
    Karthik, P. E.
    Kundu, Subrata
    [J]. ENERGY & ENVIRONMENTAL SCIENCE, 2018, 11 (04) : 744 - 771
  • [5] Recent Trends and Perspectives in Electrochemical Water Splitting with an Emphasis on Sulfide, Selenide, and Phosphide Catalysts of Fe, Co, and Ni: A Review
    Anantharaj, Sengeni
    Ede, Sivasankara Rao
    Sakthikumar, Kuppan
    Karthick, Kannimuthu
    Mishra, Soumyaranjan
    Kundu, Subrata
    [J]. ACS CATALYSIS, 2016, 6 (12): : 8069 - 8097
  • [6] Carbon supported Ni3N/Ni heterostructure for hydrogen evolution reaction in both acid and alkaline media
    Balaji, Dhandapani
    Madhavan, Jagannathan
    AlSalhi, Mohamad S.
    Aljaafreh, Mamduh J.
    Prasad, Saradh
    Show, Pau Loke
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (60) : 30739 - 30749
  • [7] Updates on the development of nanostructured transition metal nitrides for electrochemical energy storage and water splitting
    Balogun, Muhammad-Sadeeq
    Huang, Yongchao
    Qiu, Weitao
    Yang, Hao
    Ji, Hongbing
    Tong, Yexiang
    [J]. MATERIALS TODAY, 2017, 20 (08) : 425 - 451
  • [8] Bimetallic iron cobalt oxide self-supported on Ni-Foam: An efficient bifunctional electrocatalyst for oxygen and hydrogen evolution reaction
    Bandal, Harshad A.
    Jadhav, Amol R.
    Tamboli, Asif H.
    Kim, Hern
    [J]. ELECTROCHIMICA ACTA, 2017, 249 : 253 - 262
  • [9] Novel cobalt-fumarate framework as a robust and efficient electrocatalyst for water oxidation at neutral pH
    Batool, Mariam
    Ibrahim, Shaista
    Iqbal, Bushra
    Ali, Saqib
    Badshah, Amin
    Abbas, Saghir
    Turner, David R.
    Nadeem, Muhammad Arif
    [J]. ELECTROCHIMICA ACTA, 2019, 298 : 248 - 253
  • [10] High-pressure synthesis of ultraincompressible hard rhenium nitride pernitride Re2(N2)(N)2 stable at ambient conditions
    Bykov, Maxim
    Chariton, Stella
    Fei, Hongzhan
    Fedotenko, Timofey
    Aprilis, Georgios
    Ponomareva, Alena, V
    Tasnadi, Ferenc
    Abrikosov, Igor A.
    Merle, Benoit
    Feldners, Patrick
    Vogel, Sebastian
    Schnick, Wolfgang
    Prakapenka, Vitali B.
    Greenberg, Eran
    Hanfland, Michael
    Pakhomova, Anna
    Liermann, Hanns-Peter
    Katsura, Tomoo
    Dubrovinskaia, Natalia
    Dubrovinsky, Leonid
    [J]. NATURE COMMUNICATIONS, 2019, 10 (1)