Electrolytic water splitting using surplus electricity represents one of the most cost-effective and promising strategies for hydrogen production. The high overpotential of the oxygen-evolution reaction (OER) caused by the multi-electron transfer process with a high chemical energy barrier, however, limits its competitiveness. Here, a highly active and stable OER electrocatalyst was designed through a cobalt-induced intrastructural enhancement strategy combined with suitable electronic structure modulation. A carved carbon nanobox was embedded with tri-metal phosphide from a uniform Ni-Co-Fe Prussian blue analogue (PBA) nanocube by sequential NH3 center dot H2O etching and thermal phosphorization. The sample exhibited an OER activity in an ...
Rational design and controlled synthesis of hybrid structures comprising multiple components with di...
© 2018 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Hydrogen production fr...
Development of highly active, durable, and low-cost electrocatalysts for energy conversion devices, ...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Water electrolysis is regarded as a green and hi...
Water electrolysis is regarded as a green and highly efficient approach to producing high-purity hyd...
Hydrogen production from renewable electricity relies upon the development of an efficient alkaline ...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
It is critical and challenging to develop high performance transition metal phosphides (TMPs) electr...
Low efficiency and poor stability are two major challenges we encounter in the exploration of non-no...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
Reported herein is elucidation of a novel Co-based oxygen evolution catalyst generated in situ from ...
There is a high demand for alternative clean energy sources as the world faces serious environmental...
Compositional interplay of two different cobalt phosphates (Co(H2PO4)(2); Co-DP and Co(PO3)(2); Co-M...
Thesis (Ph.D.), Materials Science, Washington State UniversityHighly active, low cost and durable el...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Rational design and controlled synthesis of hybrid structures comprising multiple components with di...
© 2018 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Hydrogen production fr...
Development of highly active, durable, and low-cost electrocatalysts for energy conversion devices, ...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Water electrolysis is regarded as a green and hi...
Water electrolysis is regarded as a green and highly efficient approach to producing high-purity hyd...
Hydrogen production from renewable electricity relies upon the development of an efficient alkaline ...
Highly efficient non-noble materials for water splitting are essential for renewable energy applicat...
It is critical and challenging to develop high performance transition metal phosphides (TMPs) electr...
Low efficiency and poor stability are two major challenges we encounter in the exploration of non-no...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
Reported herein is elucidation of a novel Co-based oxygen evolution catalyst generated in situ from ...
There is a high demand for alternative clean energy sources as the world faces serious environmental...
Compositional interplay of two different cobalt phosphates (Co(H2PO4)(2); Co-DP and Co(PO3)(2); Co-M...
Thesis (Ph.D.), Materials Science, Washington State UniversityHighly active, low cost and durable el...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Rational design and controlled synthesis of hybrid structures comprising multiple components with di...
© 2018 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Hydrogen production fr...
Development of highly active, durable, and low-cost electrocatalysts for energy conversion devices, ...