Retrofitting of carbon-supported bimetallic Ni-based catalysts by phosphorization for hydrogen evolution reaction in acidic media
Author:
Funder
Fundação para a Ciência e a Tecnologia
Xunta de Galicia
U.S. Department of Energy
Oak Ridge National Laboratory
Publisher
Elsevier BV
Subject
Electrochemistry,General Chemical Engineering
Reference35 articles.
1. Surface phosphorization of nickel oxalate nanosheets to stabilize ultrathin nickel cyclotetraphosphate nanosheets for efficient hydrogen generation;Ankush;Mater. Res. Bull.,2021
2. Investigation of oxygen evolution reaction with Ni foam and stainless-steel mesh electrodes in alkaline seawater electrolysis;Lyu;J. Environ. Chem. Eng.,2022
3. Preparation of molybdenum phosphide nanoparticles/nitrogen-phosphorus co-doped carbon nanosheet composites for efficient hydrogen evolution reaction;Sun;J. Solid State Chem.,2020
4. Sustainable catalysts for water electrolysis: selected strategies for reduction and replacement of platinum-group metals;Salonen;Mater. Today Sustain.,2021
5. Critical review of platinum group metal-free materials for water electrolysis: transition from the Laboratory to the Market: earth-abundant borides and phosphides as catalysts for sustainable hydrogen production;Serov;Johnson Matthey Technol. Rev.,2021
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1. Dual-functional MnS2/MnO2 heterostructure catalyst for efficient acidic hydrogen evolution reaction and assisted degradation of organic wastewater;Journal of Energy Chemistry;2023-12
2. Large-scale synthesis of metal/nitrogen Co-doped carbon catalysts for CO2 electroreduction;Electrochimica Acta;2023-07
3. Investigation of oxygen evolution reaction with 316 and 304 stainless-steel mesh electrodes in natural seawater electrolysis;Journal of Environmental Chemical Engineering;2023-06
4. Cutting-edge methods for amplifying the oxygen evolution reaction during seawater electrolysis: a brief synopsis;Industrial Chemistry & Materials;2023
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