Understanding how the bulk structure of a material affects catalysis on its surface is critical to the development of actionable catalyst design principles. Bulk defects have been shown to affect electrocatalytic materials that are important for energy conversion systems, but the structural origins of these effects have not been fully elucidated. Here we use a combination of high-resolution scanning electrochemical cell microscopy and electron backscatter diffraction to visualize the potential-dependent electrocatalytic carbon dioxide [Formula: see text] electroreduction and hydrogen [Formula: see text] evolution activity on Au electrodes and probe the effects of bulk defects. Comparing colocated activity maps and videos to the underlying m...
Electrocatalysis undeniably offers noteworthy improvements to future energy conversion and storage t...
Hydrogen fuel cells in fuel cell electric vehicles (FCEVs) are a promising technology to reduce, and...
The electrochemical CO2 reduction reaction (CO2RR) using Cu-based catalysts holds great potential fo...
Understanding how crystallographic orientation influences the electrocatalytic performance of metal ...
Electrochemical reduction of the greenhouse gas CO2 offers prospects for the sustainable generation ...
Electrochemical AFM is a powerful tool for the real space characterization of catalysts under realis...
Electrochemical CO2 reduction has received an increased amount of interest in the last decade as a p...
Climate change, caused by greenhouse gas emissions, is one of the biggest threats to the world. As p...
Electrochemical AFM is a powerful tool for the real‐space characterization of catalysts under realis...
Carbon is ubiquitous as an electrode material in electrochemical energy conversion devices. If used ...
Pt extended surfaces and nanoparticle electrodes are used to understand the origin of anomalous acti...
Electrocatalytic CO2 reduction reaction (CO2RR) is one of the most effective methods to convert CO2 ...
The lack of structurally diverse electrocatalysts having high activity and controlled selectivity ha...
The utilization of fossil fuels (i.e., coal, petroleum, and natural gas) as the main energy source g...
To rationally design effective and stable catalysts for energy conversion applications, we need to u...
Electrocatalysis undeniably offers noteworthy improvements to future energy conversion and storage t...
Hydrogen fuel cells in fuel cell electric vehicles (FCEVs) are a promising technology to reduce, and...
The electrochemical CO2 reduction reaction (CO2RR) using Cu-based catalysts holds great potential fo...
Understanding how crystallographic orientation influences the electrocatalytic performance of metal ...
Electrochemical reduction of the greenhouse gas CO2 offers prospects for the sustainable generation ...
Electrochemical AFM is a powerful tool for the real space characterization of catalysts under realis...
Electrochemical CO2 reduction has received an increased amount of interest in the last decade as a p...
Climate change, caused by greenhouse gas emissions, is one of the biggest threats to the world. As p...
Electrochemical AFM is a powerful tool for the real‐space characterization of catalysts under realis...
Carbon is ubiquitous as an electrode material in electrochemical energy conversion devices. If used ...
Pt extended surfaces and nanoparticle electrodes are used to understand the origin of anomalous acti...
Electrocatalytic CO2 reduction reaction (CO2RR) is one of the most effective methods to convert CO2 ...
The lack of structurally diverse electrocatalysts having high activity and controlled selectivity ha...
The utilization of fossil fuels (i.e., coal, petroleum, and natural gas) as the main energy source g...
To rationally design effective and stable catalysts for energy conversion applications, we need to u...
Electrocatalysis undeniably offers noteworthy improvements to future energy conversion and storage t...
Hydrogen fuel cells in fuel cell electric vehicles (FCEVs) are a promising technology to reduce, and...
The electrochemical CO2 reduction reaction (CO2RR) using Cu-based catalysts holds great potential fo...