Rational design of multicomponent material structures with strong interfacial interactions enabling enhanced. electrocatalysis represents an attractive but underdeveloped paradigm for creating better catalysts for important electrochemical energy conversion reactions. In this work, we report metal-phosphide core-shell nanostructures as a new model electrocatalyst material system where the surface electronic states of the shell phosphide and its interactions with reaction intermediates can be effectively influenced by the core metal to achieve higher catalytic activity. The strategy is demonstrated by the design and synthesis of iron-iron phosphide (Fe@FeP) core-shell nanoparticles on carbon nanotubes (CNTs) where we find that the electronic...
Advanced catalysts for the electrocatalytic hydrogen evolution reaction (HER) and oxygen evolution r...
The preparation of size- and shape-controlled nanoparticles has enabled the understanding of importa...
The design of cheap and efficient water splitting systems for sustainable hydrogen production has at...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
The concept of core-shell nanostructured catalysts with a highly active yet insufficient stability i...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
Iron phosphides show promising but limited activity as hydrogen evolution reaction (HER) catalysts d...
It remains a challenge to develop efficient electrocatalysts in neutral media for hydrogen evolution...
Developing low-cost, high-performance catalysts is of fundamental significance for electrochemical e...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Transition metal phosphides are promising alternatives to the precious metal catalysts for various e...
© 2014 Hydrogen Energy Publications, LLC. All rights reserved. Efficient and economical hydrogen evo...
Thesis (Ph.D.)--University of Washington, 2020Colloidally synthesized nanocrystals are a compelling ...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Water electrolysis is regarded as a green and hi...
Electrolytic water splitting using surplus electricity represents one of the most cost-effective and...
Advanced catalysts for the electrocatalytic hydrogen evolution reaction (HER) and oxygen evolution r...
The preparation of size- and shape-controlled nanoparticles has enabled the understanding of importa...
The design of cheap and efficient water splitting systems for sustainable hydrogen production has at...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
The concept of core-shell nanostructured catalysts with a highly active yet insufficient stability i...
A highly active and stable non-Pt electrocatalyst for hydrogen production has been pursued for a lon...
Iron phosphides show promising but limited activity as hydrogen evolution reaction (HER) catalysts d...
It remains a challenge to develop efficient electrocatalysts in neutral media for hydrogen evolution...
Developing low-cost, high-performance catalysts is of fundamental significance for electrochemical e...
In large-scale, hydrogen production from water-splitting represents the most promising solution for ...
Transition metal phosphides are promising alternatives to the precious metal catalysts for various e...
© 2014 Hydrogen Energy Publications, LLC. All rights reserved. Efficient and economical hydrogen evo...
Thesis (Ph.D.)--University of Washington, 2020Colloidally synthesized nanocrystals are a compelling ...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Water electrolysis is regarded as a green and hi...
Electrolytic water splitting using surplus electricity represents one of the most cost-effective and...
Advanced catalysts for the electrocatalytic hydrogen evolution reaction (HER) and oxygen evolution r...
The preparation of size- and shape-controlled nanoparticles has enabled the understanding of importa...
The design of cheap and efficient water splitting systems for sustainable hydrogen production has at...