The electrochemical nitrogen reduction reaction (NRR) at ambient conditions is a promising alternative to the traditional energy‐intensive Haber‐Bosch process to produce ammonia. The challenge is to achieve a sufficient energy efficiency, yield rate and selectivity to make the process practical. Herein, we demonstrate that Ruthenium nanoparticles (Ru NPs) enable NRR in 0.01 M HCl aqueous solution at very high energy efficiency, i.e., very low overpotentials. Remarkably, the NRR occurs at potential close to or even above H+/H2 reversible potential, significantly enhancing the NRR selectivity versus the production of H2. NH3 yield rates as high as ~5.5 mg h‐1 m‐2 at 20°C and 21.4 mg h‐1 m‐2 at 60°C were achieved at E = ‐100 mV versus the rela...
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...
Ruthenium is a good catalyst for ammonia synthesis in the Haber–Bosch process and a promising electr...
© 2020 American Chemical Society. The limitations of the Haber-Bosch reaction, particularly high-tem...
© 2020 American Chemical Society. The limitations of the Haber-Bosch reaction, particularly high-tem...
The electrochemical N 2 reduction reaction (NRR) offers a direct pathway to produce NH 3 from renewa...
The electrochemical N2 reduction reaction (NRR) offers a direct pathway to produce NH3 from renewabl...
Ammonia is an essential bulk chemical and the main component of fertilizers. In addition, the use of...
The storage of renewable energy in ammonia (NH3) is a promising alternative to hydrogen (H2) for our...
The drawback of the energy-intensive Haber-Bosch process promotes the research and development of al...
Electrochemical reduction of N2andnbsp;to NH3andnbsp;using renewable electricity is a simple and gre...
Ammonia production is essential for agriculture and chemical industry but the current industrial Hab...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
International audienceMultielectron reductions such as the hydrogen evolution reaction (HER) play an...
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...
Ruthenium is a good catalyst for ammonia synthesis in the Haber–Bosch process and a promising electr...
© 2020 American Chemical Society. The limitations of the Haber-Bosch reaction, particularly high-tem...
© 2020 American Chemical Society. The limitations of the Haber-Bosch reaction, particularly high-tem...
The electrochemical N 2 reduction reaction (NRR) offers a direct pathway to produce NH 3 from renewa...
The electrochemical N2 reduction reaction (NRR) offers a direct pathway to produce NH3 from renewabl...
Ammonia is an essential bulk chemical and the main component of fertilizers. In addition, the use of...
The storage of renewable energy in ammonia (NH3) is a promising alternative to hydrogen (H2) for our...
The drawback of the energy-intensive Haber-Bosch process promotes the research and development of al...
Electrochemical reduction of N2andnbsp;to NH3andnbsp;using renewable electricity is a simple and gre...
Ammonia production is essential for agriculture and chemical industry but the current industrial Hab...
Searching for highly efficient, active, and stable electrocatalysts for the nitrogen reduction react...
International audienceMultielectron reductions such as the hydrogen evolution reaction (HER) play an...
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...
Ruthenium is a good catalyst for ammonia synthesis in the Haber–Bosch process and a promising electr...