Nitrogen reduction reaction (NRR), as a green and sustainable technology, is far from a practical application due to the lack of efficient electrocatalysts. In this work, we found that antimonene, a group-VA elemental two-dimensional (2D) material, is attractive as an electrocatalyst for NRR. The antimonene here is acquired through chemical exfoliation of antimony (Sb) using H2SO4 for the first time, which simultaneously achieved efficient large-sized exfoliation and created a high density of active edge sites. Moreover, the concentration of defects shows a gradual increasing tendency as the treatment time extends. The obtained antimonene exhibited favorable average ammonia (NH3) yield and Faradaic efficiency as high as 2.08 μg h–1 cm–2 and...
The lack of large-area synthesis processes on substrates compatible with industry requirements has b...
Antimonene has attracted much attention due to its excellent properties such as high carrier mobilit...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
Antimonene, a novel group 15 two-dimensional material, is attracting great attention due to its outs...
Two-dimensional (2D) materials are known to be useful in catalysis. Engineering 3D bulk materials in...
The artificial nitrogen (N2) reduction reaction (NRR) via electrocatalysis is a newly developed meth...
In recent years, the synthesis of ammonia (NH3) has been developed by electrocatalytic technology th...
Ammonia (NH3) is one of the most globally produced chemical for industrial use. It is an important c...
Antimonene, a monolayer of β-antimony, is increasingly attracting considerable attention, more than ...
The conversion of nitrogen to ammonia offers a sustainable and environmentally friendly approach for...
The ambient electrochemical N2 reduction reaction (NRR) is a future approach for the artificial NH3 ...
Large-scale ammonia synthesis under ambient environment is a highly demanding technology which is pr...
The conversion of nitrogen to ammonia offers a sustainable and environmentally friendly approach for...
Production of ammonia through an electrochemical process suffers from two challenging issues, namely...
The electrocatalytic N₂ reduction reaction (eNRR) – which can occur under ambient conditions with re...
The lack of large-area synthesis processes on substrates compatible with industry requirements has b...
Antimonene has attracted much attention due to its excellent properties such as high carrier mobilit...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...
Antimonene, a novel group 15 two-dimensional material, is attracting great attention due to its outs...
Two-dimensional (2D) materials are known to be useful in catalysis. Engineering 3D bulk materials in...
The artificial nitrogen (N2) reduction reaction (NRR) via electrocatalysis is a newly developed meth...
In recent years, the synthesis of ammonia (NH3) has been developed by electrocatalytic technology th...
Ammonia (NH3) is one of the most globally produced chemical for industrial use. It is an important c...
Antimonene, a monolayer of β-antimony, is increasingly attracting considerable attention, more than ...
The conversion of nitrogen to ammonia offers a sustainable and environmentally friendly approach for...
The ambient electrochemical N2 reduction reaction (NRR) is a future approach for the artificial NH3 ...
Large-scale ammonia synthesis under ambient environment is a highly demanding technology which is pr...
The conversion of nitrogen to ammonia offers a sustainable and environmentally friendly approach for...
Production of ammonia through an electrochemical process suffers from two challenging issues, namely...
The electrocatalytic N₂ reduction reaction (eNRR) – which can occur under ambient conditions with re...
The lack of large-area synthesis processes on substrates compatible with industry requirements has b...
Antimonene has attracted much attention due to its excellent properties such as high carrier mobilit...
The industrial artificial fixation of atmospheric N-2 to NH3 is carried out using the Haber-Bosch pr...