The interest in electrochemical carbon dioxide (CO2) reduction is two-fold: the association of climate change with the rise in atmospheric CO2 concentrations globally and the increasing need to transition from fossil fuel-derived hydrocarbons as chemical feedstocks and energy sources…
Electrocatalysis, which can store electrical energy from renewable sources like solar and wind in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
Electrocatalysis, which can store electrical energy from renewable sources like solar and wind in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
Electrocatalysis, which can store electrical energy from renewable sources like solar and wind in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
The interest in electrochemical carbon dioxide (CO2) reduction is two-fold: the association of climate change with the rise in atmospheric CO2 concentrations globally and the increasing need to transition from fossil fuel-derived hydrocarbons as chemical feedstocks and energy sources…
Quinones play significant roles in biological and industrial processes such as photosynthesis and aerobic respiration, dye-synthesized solar panels, redox flow batteries, water oxidation process, and industrial hydrogen peroxide production…
Electrocatalytic CO2 reduction is an attractive strategy to mitigate the continuous rise in atmospheric CO2 concentrations and generate value-added chemical products…
Electrocatalysis, which can store electrical energy from renewable sources like solar and wind in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
Electrocatalysis, which can store electrical energy from renewable sources like solar and wind in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
Electrocatalysis, which can store electrical energy from renewable sources like solar and wind in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
Electrocatalysis, which can store electrical energy from renewable sources in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
The exacerbating circumstances of the geochemical landscape have driven innovations in the development of green strategies and technologies. An area of importance is the generation of feedstock chemicals via the utilization of anthropogenic carbon dioxide (CO2)…
Due to the rise in atmospheric carbon dioxide (CO2) concentrations, there is a need for the development of new strategies to enhance the selectivity and activity of the electrocatalytic conversion of CO2 to value-added products…
Due to the rise in atmospheric carbon dioxide (CO2) concentrations, there is a need for the development of new strategies to enhance the selectivity and activity of the electrocatalytic conversion of CO2 to value-added products…
Inspiration from nature has resulted in the development of synthetic electrocatalysts for the reduction of O2 (ORR), primarily containing Fe- and Co-based active sites supported by macrocyclic porphyrinic ligand frameworks…
It is crucial that the rise in anthropogenic carbon dioxide (CO2) emissions is mitigated. One way to combat these emissions is through the use of homogeneous earth abundant transition-metal electrocatalysts capable of selective CO2 reduction…
Electrocatalysis, which can store electrical energy from renewable sources like solar and wind in chemical bonds, is an attractive solution to activating abundant small molecule precursors…
A possible strategy for the reduction of carbon dioxide (CO2) to generate value-added chemical products is through the use of homogeneous earth abundant transition-metal electrocatalysts…