Tin (Sn) is known to be a good catalyst for electrochemical reduction of CO<sub>2</sub> to formate in 0.5 M KHCO<sub>3</sub>. But when a thin layer of SnO<sub>2</sub> is coated over Cu nanoparticles, the reduction becomes Sn-thickness dependent: the thicker (1.8 nm) shell shows Sn-like activity to generate formate whereas the thinner (0.8 nm) shell is selective to the formation of CO with the conversion Faradaic efficiency (FE) reaching 93% at −0.7 V (vs reversible hydrogen electrode (RHE)). Theoretical calculations suggest that the 0.8 nm SnO<sub>2</sub> shell likely alloys with trace of Cu, causing the SnO<sub>2</sub> lattice to be uniaxially compressed and favors the production of CO over formate. The report demonstrates a new strategy t...
The development of earth-abundant catalysts for selective electrochemical CO2 conversion is a centra...
Bimetallic electrocatalysts have emerged as a viable strategy to tune the electrocatalytic CO2 reduc...
Bimetallic electrocatalysts have emerged as a viable strategy to tune the electrocatalytic CO2 reduc...
Pursuing high catalytic selectivity is challenging but paramount for an efficient and low-cost CO2 e...
Sn-based materials can be used as electrocatalysts for the CO2 electroreduction reaction (CO2RR), pr...
One major challenge to the electrochemical conversion of CO<sub>2</sub> to useful fuels and chemical...
With ever-increasing energy consumption and continuous rise in atmospheric CO2 concentration, electr...
In this study, a selective Sn based catalytic system that electrochemically reduces CO2 to formate h...
Oxide-derived (OD) Sn-Pb-Sb, and Cu-Sn alloy catalysts were prepared for electrochemical reduction o...
High surface area tin oxide nanocrystals prepared by a facile hydrothermal method are evaluated as e...
Copper-based bimetallic catalysts have been recently showing promising performance for the selective...
Sn-decorated Cu (Cu–Sn) electrodes were proposed as an alternative to Ag- and Au-based electrocataly...
Controlling the selectivity in electrochemical CO2 reduction is an unsolved challenge. While tin (Sn...
Sn-decorated Cu (Cu-Sn) electrodes were proposed as an alternative to Ag-and Au-based electrocatalys...
The electrochemical reduction of carbon dioxide into carbon monoxide, hydrocarbons and formic acid h...
The development of earth-abundant catalysts for selective electrochemical CO2 conversion is a centra...
Bimetallic electrocatalysts have emerged as a viable strategy to tune the electrocatalytic CO2 reduc...
Bimetallic electrocatalysts have emerged as a viable strategy to tune the electrocatalytic CO2 reduc...
Pursuing high catalytic selectivity is challenging but paramount for an efficient and low-cost CO2 e...
Sn-based materials can be used as electrocatalysts for the CO2 electroreduction reaction (CO2RR), pr...
One major challenge to the electrochemical conversion of CO<sub>2</sub> to useful fuels and chemical...
With ever-increasing energy consumption and continuous rise in atmospheric CO2 concentration, electr...
In this study, a selective Sn based catalytic system that electrochemically reduces CO2 to formate h...
Oxide-derived (OD) Sn-Pb-Sb, and Cu-Sn alloy catalysts were prepared for electrochemical reduction o...
High surface area tin oxide nanocrystals prepared by a facile hydrothermal method are evaluated as e...
Copper-based bimetallic catalysts have been recently showing promising performance for the selective...
Sn-decorated Cu (Cu–Sn) electrodes were proposed as an alternative to Ag- and Au-based electrocataly...
Controlling the selectivity in electrochemical CO2 reduction is an unsolved challenge. While tin (Sn...
Sn-decorated Cu (Cu-Sn) electrodes were proposed as an alternative to Ag-and Au-based electrocatalys...
The electrochemical reduction of carbon dioxide into carbon monoxide, hydrocarbons and formic acid h...
The development of earth-abundant catalysts for selective electrochemical CO2 conversion is a centra...
Bimetallic electrocatalysts have emerged as a viable strategy to tune the electrocatalytic CO2 reduc...
Bimetallic electrocatalysts have emerged as a viable strategy to tune the electrocatalytic CO2 reduc...