With less energy consumption and environmental pollution, electrochemical ammonia synthesis is regarded as the most promising way to replace the industrial Haber-Bosch process, which greatly contributes to global energy consumption and CO2 emission. At present, the best metal electrocatalyst for N2 fixation is ruthenium although its performance still suffers from a low Faradaic efficiency and a high overpotential. Alloy engineering is a promising way to discover more metal-based electrocatalysts for dinitrogen reduction reaction (N2RR), and almost all reported alloy catalysts so far are binary alloys. In this work, we proposed a large group of ternary alloy electrocatalysts (Heusler alloys) for N2RR and demonstrated their superior catalytic...
A computational approach to judiciously predict high-entropy alloys (HEAs) as an efficient and susta...
The discovery of stable and noble-metal-free catalysts toward efficient electrochemical reduction of...
As an alternative to the traditional Haber-Bosch process for ammonia synthesis under high temperatur...
With less energy consumption and environmental pollution, electrochemical ammonia synthesis is regar...
With less energy consumption and environmental pollution, electrochemical ammonia synthesis is regar...
With less energy consumption and environmental pollution, electrochemical ammonia synthesis is regar...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Exploring electrocatalysts with high activity, selectivity, and stability is essential for the devel...
Electrochemical reduction of N2andnbsp;to NH3andnbsp;using renewable electricity is a simple and gre...
Artificial nitrogen fixation causes excess nitrate (NO3-) production due to an unbalanced nitrogen c...
Artificial ammonia synthesis is dominated by the Haber-Bosch (HB) process at present. Recently, conc...
The ambient electrochemical N2 reduction reaction (NRR) is a future approach for the artificial NH3 ...
A computational approach to judiciously predict high-entropy alloys (HEAs) as an efficient and susta...
The discovery of stable and noble-metal-free catalysts toward efficient electrochemical reduction of...
As an alternative to the traditional Haber-Bosch process for ammonia synthesis under high temperatur...
With less energy consumption and environmental pollution, electrochemical ammonia synthesis is regar...
With less energy consumption and environmental pollution, electrochemical ammonia synthesis is regar...
With less energy consumption and environmental pollution, electrochemical ammonia synthesis is regar...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
Exploring electrocatalysts with high activity, selectivity, and stability is essential for the devel...
Electrochemical reduction of N2andnbsp;to NH3andnbsp;using renewable electricity is a simple and gre...
Artificial nitrogen fixation causes excess nitrate (NO3-) production due to an unbalanced nitrogen c...
Artificial ammonia synthesis is dominated by the Haber-Bosch (HB) process at present. Recently, conc...
The ambient electrochemical N2 reduction reaction (NRR) is a future approach for the artificial NH3 ...
A computational approach to judiciously predict high-entropy alloys (HEAs) as an efficient and susta...
The discovery of stable and noble-metal-free catalysts toward efficient electrochemical reduction of...
As an alternative to the traditional Haber-Bosch process for ammonia synthesis under high temperatur...