Metal borides/borates have been considered promising as oxygen evolution reaction catalysts; however, to date, there is a dearth of evidence of long-term stability at practical current densities. Here we report a phase composition modulation approach to fabricate effective borides/borates-based catalysts. We find that metal borides in-situ formed metal borates are responsible for their high activity. This knowledge prompts us to synthesize NiFe-Boride, and to use it as a templating precursor to form an active NiFe-Borate catalyst. This boride-derived oxide catalyzes oxygen evolution with an overpotential of 167 mV at 10 mA/cm2 in 1 M KOH electrolyte and requires a record-low overpotential of 460 mV to maintain water splitting performance fo...
Hydrogen, as an abundant and clean, renewable energy source, has taken the center stage to replace c...
Thesis (Master's)--University of Washington, 2023Recent years have seen an increase in the study of ...
Electrocatalytic water splitting (EWS) is a promising route to produce hydrogen in a sustainable and...
Metal borides/borates have been considered promising as oxygen evolution reaction catalysts; however...
© 2017 The Royal Society of Chemistry. We present a variety of amorphous transition-metal borides pr...
The oxygen evolution reaction (OER) is a key half-reaction involved in many important electrochemica...
With a motivation to discover efficient materials for direct electrolysis of seawater, bimetallic ox...
Designing cost-effective oxygen evolution reaction (OER) electrocatalysts is essential for sustainab...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
High-entropy materials offer numerous advantages as catalysts, including a flexible composition to t...
Thin catalyst films with electrocatalytic water oxidation properties similar to those of a recently ...
A facile and universal route for synthesizing transition metal borides has been developed by reactio...
New oxygen evolution reaction (OER) electrocatalysts based on low-cost elements, which set new bench...
Alkaline water electrolysis yielding H2 and O2 is a very promising fuel cell technology for sustaina...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
Hydrogen, as an abundant and clean, renewable energy source, has taken the center stage to replace c...
Thesis (Master's)--University of Washington, 2023Recent years have seen an increase in the study of ...
Electrocatalytic water splitting (EWS) is a promising route to produce hydrogen in a sustainable and...
Metal borides/borates have been considered promising as oxygen evolution reaction catalysts; however...
© 2017 The Royal Society of Chemistry. We present a variety of amorphous transition-metal borides pr...
The oxygen evolution reaction (OER) is a key half-reaction involved in many important electrochemica...
With a motivation to discover efficient materials for direct electrolysis of seawater, bimetallic ox...
Designing cost-effective oxygen evolution reaction (OER) electrocatalysts is essential for sustainab...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
High-entropy materials offer numerous advantages as catalysts, including a flexible composition to t...
Thin catalyst films with electrocatalytic water oxidation properties similar to those of a recently ...
A facile and universal route for synthesizing transition metal borides has been developed by reactio...
New oxygen evolution reaction (OER) electrocatalysts based on low-cost elements, which set new bench...
Alkaline water electrolysis yielding H2 and O2 is a very promising fuel cell technology for sustaina...
The overriding obstacle to mass production of hydrogen from water as the premium fuel for powering o...
Hydrogen, as an abundant and clean, renewable energy source, has taken the center stage to replace c...
Thesis (Master's)--University of Washington, 2023Recent years have seen an increase in the study of ...
Electrocatalytic water splitting (EWS) is a promising route to produce hydrogen in a sustainable and...