Transition metal phosphides are promising alternatives to the precious metal catalysts for various electrocatalysis applications. Controllable and precise surface engineering of electrocatalysts is the key challenge to enhance their performance. Herein, we demonstrate an ion-exchange strategy to produce cobalt phosphide nanowires which have a conductive core and a thickness-controlled surface layer with sulfur dopants, phosphorus vacancies, and amorphous domains. They are applied for hydrogen evolution reaction with high stability, achieving a current density of 100 mA cm-2 at an overpotential of 114 mV. Based on both comprehensive state-of-the-art experimental characterizations and theoretical investigations, the excellent catalytic perfor...
Electrochemical water splitting in alkaline solution plays a growing role in alternative energy devi...
Late transition metal phosphides have been reported to have high activity for catalyzing hydrogen ev...
In this Communication, we report the topotactic fabrication of self-supported nanoporous cobalt phos...
© 2020 Elsevier Ltd Transition metal phosphides are promising alternatives to the precious metal cat...
© 2014 Hydrogen Energy Publications, LLC. All rights reserved. Efficient and economical hydrogen evo...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
Hydrogen production via water splitting has been extensively explored over the past few decades, and...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
Electrochemical water splitting in alkaline solution plays a growing role in alternative energy devi...
Hydrogen production via water splitting is a promising pathway to a clean energy resource. Herein we...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
Because of its advantages such as abundant resources, low cost, simple synthesis, and high electroch...
Hydrogen is one of the most attractive renewables for future energy application, therefore it is vit...
Because of its advantages such as abundant resources, low cost, simple synthesis, and high electroch...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Water electrolysis is regarded as a green and hi...
Electrochemical water splitting in alkaline solution plays a growing role in alternative energy devi...
Late transition metal phosphides have been reported to have high activity for catalyzing hydrogen ev...
In this Communication, we report the topotactic fabrication of self-supported nanoporous cobalt phos...
© 2020 Elsevier Ltd Transition metal phosphides are promising alternatives to the precious metal cat...
© 2014 Hydrogen Energy Publications, LLC. All rights reserved. Efficient and economical hydrogen evo...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
Hydrogen production via water splitting has been extensively explored over the past few decades, and...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
Electrochemical water splitting in alkaline solution plays a growing role in alternative energy devi...
Hydrogen production via water splitting is a promising pathway to a clean energy resource. Herein we...
Electrochemical water splitting into hydrogen and oxygen is a promising technology for sustainable e...
Because of its advantages such as abundant resources, low cost, simple synthesis, and high electroch...
Hydrogen is one of the most attractive renewables for future energy application, therefore it is vit...
Because of its advantages such as abundant resources, low cost, simple synthesis, and high electroch...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Water electrolysis is regarded as a green and hi...
Electrochemical water splitting in alkaline solution plays a growing role in alternative energy devi...
Late transition metal phosphides have been reported to have high activity for catalyzing hydrogen ev...
In this Communication, we report the topotactic fabrication of self-supported nanoporous cobalt phos...