© 2017 The Royal Society of Chemistry. In this work, the electrochemical reduction of carbon dioxide using [Mn+(cyclam)Cln] (M = Ni2+ and Co3+) as electrocatalysts has been studied in 1-butyl-3-methylimidazolium tetrafluoroborate and 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide (BMImBF4 and BMImNTf2 respectively) ionic liquids as reaction media. Complexes were characterized electrochemically in these salts and relevant parameters, such as a heterogeneous electron transfer rate was calculated. Results indicate a faster M(ii)/M(i) redox process in BMImBF4 despite its higher viscosity compared to BMImNTF2. Cyclic voltammetry experiments demonstrated that [Ni(cyclam)Cl2] is the most active macrocycle, towards the reaction under...
The efficiency of the reduction of carbon dioxide catalysed by 1,4,8,11- tetraazacyclotetradecane ni...
Electrochemical CO2 conversion technology is becoming indispensable in the development of a sustaina...
International audienceThe direct CO2 electrochemical reduction on model platinum single crystal elec...
International audienceDifferent abbreviation systems for denoting imidazolium-based room temperature...
The catalytic activity of room-temperature ionic liquid 1-ethyl-3-methylimidazolium trifluoromethane...
The electroreduction of carbon dioxide is systematically investigated in Room Temperature Ionic Liqu...
The electroreduction of carbon dioxide is systematically investigated in Room Temperature Ionic Liqu...
The homogeneous electrochemical reduction of CO₂ by the molecular catalyst [Ni(cyclam)]2+ was studie...
Electrochemical reduction of carbon dioxide is one of the plausible approaches towards renewable ene...
With the development of global economy, the combustion of a large number of fossil fuels leads to th...
With the development of global economy, the combustion of a large number of fossil fuels leads to th...
The potential utility of room temperature ionic liquids as electrolytes in current electrochemical a...
Several imidazolium-based ionic liquids significantly enhance the activity of MoO2 for electrochemic...
Electrochemical reduction of CO2 is a novel research field towards a CO2-neutral global economy and ...
Electrochemical reduction of CO2 is a novel research field towards a CO2-neutral global economy and ...
The efficiency of the reduction of carbon dioxide catalysed by 1,4,8,11- tetraazacyclotetradecane ni...
Electrochemical CO2 conversion technology is becoming indispensable in the development of a sustaina...
International audienceThe direct CO2 electrochemical reduction on model platinum single crystal elec...
International audienceDifferent abbreviation systems for denoting imidazolium-based room temperature...
The catalytic activity of room-temperature ionic liquid 1-ethyl-3-methylimidazolium trifluoromethane...
The electroreduction of carbon dioxide is systematically investigated in Room Temperature Ionic Liqu...
The electroreduction of carbon dioxide is systematically investigated in Room Temperature Ionic Liqu...
The homogeneous electrochemical reduction of CO₂ by the molecular catalyst [Ni(cyclam)]2+ was studie...
Electrochemical reduction of carbon dioxide is one of the plausible approaches towards renewable ene...
With the development of global economy, the combustion of a large number of fossil fuels leads to th...
With the development of global economy, the combustion of a large number of fossil fuels leads to th...
The potential utility of room temperature ionic liquids as electrolytes in current electrochemical a...
Several imidazolium-based ionic liquids significantly enhance the activity of MoO2 for electrochemic...
Electrochemical reduction of CO2 is a novel research field towards a CO2-neutral global economy and ...
Electrochemical reduction of CO2 is a novel research field towards a CO2-neutral global economy and ...
The efficiency of the reduction of carbon dioxide catalysed by 1,4,8,11- tetraazacyclotetradecane ni...
Electrochemical CO2 conversion technology is becoming indispensable in the development of a sustaina...
International audienceThe direct CO2 electrochemical reduction on model platinum single crystal elec...