The selective oxidation of methane to methanol (SOMTM) by molecular oxygen is a holy grail in catalytic chemistry and remains a challenge in chemical industry. We perform SOMTM in a CH4/O2 plasma, at low temperature and atmospheric pressure, promoted by Ni-based catalysts, reaching 81 % liquid oxygenates selectivity and 50 % CH3OH selectivity, with an excellent catalytic stability. Chemical kinetics modelling shows that CH3OH in the plasma is mainly produced through radical reactions, i.e., CH4 + O(1D) → CH3O + H, followed by CH3O + H + M→ CH3OH + M and CH3O + HCO → CH3OH + CO. The catalyst characterization shows that the improved production of CH3OH is attributed to abundant chemisorbed oxygen species, originating from highly dispersed NiO...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
It is crucial to develop a catalyst made of earth-abundant elements highly active for a complete oxi...
It is crucial to develop a catalyst made of earth-abundant elements highly active for a complete oxi...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Methane activation chemistry, despite being widely reported in literature, remains to date a subject...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Methane activation chemistry, despite being widely reported in literature, remains to date a subject...
The selective oxidation of methane, which is the primary component of natural gas, isone of the most...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
The direct catalytic conversion of methane to liquid oxygenated compounds, such as methanol or dimet...
The direct partial oxidation of CH4 to CH30H would offer considerable economic advantages over the c...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
It is crucial to develop a catalyst made of earth-abundant elements highly active for a complete oxi...
It is crucial to develop a catalyst made of earth-abundant elements highly active for a complete oxi...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Methane activation chemistry, despite being widely reported in literature, remains to date a subject...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Methane activation chemistry, despite being widely reported in literature, remains to date a subject...
The selective oxidation of methane, which is the primary component of natural gas, isone of the most...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
The direct catalytic conversion of methane to liquid oxygenated compounds, such as methanol or dimet...
The direct partial oxidation of CH4 to CH30H would offer considerable economic advantages over the c...
The selective oxidation of methane, the primary component of natural gas, remains an important chall...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
Direct conversion of methane into chemicals and fuels under mild conditions has been considered as a...
It is crucial to develop a catalyst made of earth-abundant elements highly active for a complete oxi...
It is crucial to develop a catalyst made of earth-abundant elements highly active for a complete oxi...