Demand for ammonia continues to increase to sustain the growing global population. The direct electrochemical N2 reduction reaction (NRR) powered by renewable electricity offers a promising carbon-neutral and sustainable strategy for manufacturing NH3, yet achieving this remains a grand challenge. Here, we report a synergistic strategy to promote ambient NRR for ammonia production by tuning the Te vacancies (VTe) and surface hydrophobicity of two-dimensional TaTe2 nanosheets. Remarkable NH3 faradic efficiency of up to 32.2% is attained at a mild overpotential, which is largely maintained even after 100 h of consecutive electrolysis. Isotopic labeling validates that the N atoms of formed NH4+ originate from N2. In situ X-ray diffraction indi...
The electrochemical nitrogen reduction reaction (NRR) over single-atom catalysts (SACs) anchored on ...
A highly attractive, but still a key challenge, is the development of earth-abundant electrocatalyst...
Ammonia (NH3) is one of the most widely used chemicals in industry and agriculture, which is very im...
Ammonia (NH₃), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
The ambient electrochemical N2 reduction reaction (NRR) is a future approach for the artificial NH3 ...
Ammonia (NH3), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
Vacancy engineering has been proved repeatedly as an adoptable strategy to boost electrocatalysis, w...
Ammonia (NH 3 ) synthesis by the electrochemical N 2 reduction reaction (NRR) is increasingly studie...
For high-efficiency NH3 synthesis via ambient-condition electrohydrogenation of inert N2, it is pivo...
Electrochemical nitrogen-to-ammonia conversion by the nitrogen reduction reaction (NRR) under ambien...
NH3 synthesis consumes 1% of the world’s energy, making it a substantial contribution to greenhouse ...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
The Haber-Bosh process is currently potent for ammonia (NH3) production at a high rate but is an ene...
Pristine TiO2/Au (P-TiO2/Au) is modified by hydrogen plasma (H-TiO2/Au) or hydrogen and oxygen plasm...
The electrochemical nitrogen reduction reaction (NRR) over single-atom catalysts (SACs) anchored on ...
A highly attractive, but still a key challenge, is the development of earth-abundant electrocatalyst...
Ammonia (NH3) is one of the most widely used chemicals in industry and agriculture, which is very im...
Ammonia (NH₃), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
The ambient electrochemical N2 reduction reaction (NRR) is a future approach for the artificial NH3 ...
Ammonia (NH3), one of the basic chemicals in most fertilizers and a promising carbon-free energy sto...
Vacancy engineering has been proved repeatedly as an adoptable strategy to boost electrocatalysis, w...
Ammonia (NH 3 ) synthesis by the electrochemical N 2 reduction reaction (NRR) is increasingly studie...
For high-efficiency NH3 synthesis via ambient-condition electrohydrogenation of inert N2, it is pivo...
Electrochemical nitrogen-to-ammonia conversion by the nitrogen reduction reaction (NRR) under ambien...
NH3 synthesis consumes 1% of the world’s energy, making it a substantial contribution to greenhouse ...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
The catalytic synthesis of NH3 from the thermodynamically challenging N2 reduction reaction under mi...
The Haber-Bosh process is currently potent for ammonia (NH3) production at a high rate but is an ene...
Pristine TiO2/Au (P-TiO2/Au) is modified by hydrogen plasma (H-TiO2/Au) or hydrogen and oxygen plasm...
The electrochemical nitrogen reduction reaction (NRR) over single-atom catalysts (SACs) anchored on ...
A highly attractive, but still a key challenge, is the development of earth-abundant electrocatalyst...
Ammonia (NH3) is one of the most widely used chemicals in industry and agriculture, which is very im...