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Title: Energy and fuels from electrochemical interfaces

Journal Article · · Nature Materials
DOI:https://doi.org/10.1038/NMAT4738· OSTI ID:1352573
 [1];  [1];  [1];  [1]
  1. Argonne National Lab. (ANL), Lemont, IL (United States). Materials Science Division

Advances in electrocatalysis at solid–liquid interfaces are vital for driving the technological innovations that are needed to deliver reliable, affordable and environmentally friendly energy. Here, in this paper, we highlight the key achievements in the development of new materials for efficient hydrogen and oxygen production in electrolysers and, in reverse, their use in fuel cells. A key issue addressed here is the degree to which the fundamental understanding of the synergy between covalent and non-covalent interactions can form the basis for any predictive ability in tailor-making real-world catalysts. Common descriptors such as the substrate–hydroxide binding energy and the interactions in the double layer between hydroxide-oxides and H---OH are found to control individual parts of the hydrogen and oxygen electrochemistry that govern the efficiency of water-based energy conversion and storage systems. Lastly, links between aqueous- and organic-based environments are also established, encouraging the 'fuel cell' and 'battery' communities to move forward together.

Research Organization:
Argonne National Laboratory (ANL), Argonne, IL (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES); USDOE Office of Energy Efficiency and Renewable Energy (EERE), Sustainable Transportation Office. Hydrogen Fuel Cell Technologies Office (HFTO)
Grant/Contract Number:
AC02-06CH11357
OSTI ID:
1352573
Journal Information:
Nature Materials, Vol. 16, Issue 1; ISSN 1476-1122
Publisher:
Nature Publishing GroupCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 1308 works
Citation information provided by
Web of Science

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From Bad Electrochemical Practices to an Environmental and Waste Reducing Approach for the Generation of Active Hydrogen Evolving Electrodes journal November 2019
POM & MOF-based Electrocatalysts for Energy-related Reactions journal March 2018
Precursor-Based Synthesis of Porous Colloidal Particles towards Highly Efficient Catalysts journal May 2018
Interface Electronic Coupling in Hierarchical FeLDH(FeCo)/Co(OH) 2 Arrays for Efficient Electrocatalytic Oxygen Evolution journal July 2019
Interfacing nickel nitride and nickel boosts both electrocatalytic hydrogen evolution and oxidation reactions journal October 2018
Inorganic semiconductor biointerfaces journal November 2018
Ultrasmall Ir nanoparticles for efficient acidic electrochemical water splitting journal January 2018
Cobalt phosphosulfide in the tetragonal phase: a highly active and durable catalyst for the hydrogen evolution reaction journal January 2018
Self-supported MoP nanocrystals embedded in N,P-codoped carbon nanofibers via a polymer-confinement route for electrocatalytic hydrogen production journal January 2019
Ternary metal sulfides for electrocatalytic energy conversion journal January 2019
CO 2 electroreduction to ethylene via hydroxide-mediated copper catalysis at an abrupt interface journal May 2018

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