The design and synthesis of nanocatalysts with well-defined sizes, compositions, and structures have revolutionized our accessibility to tunable catalyst activity and selectivity for a variety of energy-related electrochemical reactions. Nonetheless, establishing structure-(re)activity correlations requires the understanding of the dynamic evolution of pristine nanocatalysts and the identification of their active states under operating conditions. We previously communicated the operando observation of Cu nanocatalysts evolving into active metallic Cu nanograins for CO2 electroreduction (Yang et al. Nature 2023, 614, 262−269). Here, we expand our discussion to the technical capabilities and further research applications of operando electroch...
The electroreduction of CO2 (CO2RR) is a promising strategy toward sustainable fuels. Cu is the only...
The direct electrochemical conversion of carbon dioxide (CO2) into multi‐carbon (C2+) products still...
Numerous insights of the structure–electrochemical activity relationship of nanocatalysts have been ...
One of the biggest challenges in electrocatalysis is unravelling the structural and chemical changes...
One of the biggest challenges in electrocatalysis is unravelling the structural and chemical changes...
The urgency of climate change demands the simultaneous removal of carbon dioxide from the atmosphere...
The direct electrochemical conversion of carbon dioxide (CO2) into multi-carbon (C2+) products still...
Electrons are the currency of the future energy economy. With a host of renewable sources of electri...
Catalytic selectivity during carbon dioxide electroreduction can be tuned by using geometric copper-...
The direct electrochemical conversion of carbon dioxide (CO2) into multi-carbon (C2+) products still...
Advances in electrocatalysis research rely heavily on building a thorough mechanistic understanding ...
To rationally design effective and stable catalysts for energy conversion applications, we need to u...
393 pagesElectrocatalysis has been the cornerstone for enhancing energy efficiency, minimizing envir...
In this mini-review we compare two prototypical metal foam electrocatalysts applied to the transform...
The foreseeable worldwide energy and environmental challenges demand renewable alternative sources, ...
The electroreduction of CO2 (CO2RR) is a promising strategy toward sustainable fuels. Cu is the only...
The direct electrochemical conversion of carbon dioxide (CO2) into multi‐carbon (C2+) products still...
Numerous insights of the structure–electrochemical activity relationship of nanocatalysts have been ...
One of the biggest challenges in electrocatalysis is unravelling the structural and chemical changes...
One of the biggest challenges in electrocatalysis is unravelling the structural and chemical changes...
The urgency of climate change demands the simultaneous removal of carbon dioxide from the atmosphere...
The direct electrochemical conversion of carbon dioxide (CO2) into multi-carbon (C2+) products still...
Electrons are the currency of the future energy economy. With a host of renewable sources of electri...
Catalytic selectivity during carbon dioxide electroreduction can be tuned by using geometric copper-...
The direct electrochemical conversion of carbon dioxide (CO2) into multi-carbon (C2+) products still...
Advances in electrocatalysis research rely heavily on building a thorough mechanistic understanding ...
To rationally design effective and stable catalysts for energy conversion applications, we need to u...
393 pagesElectrocatalysis has been the cornerstone for enhancing energy efficiency, minimizing envir...
In this mini-review we compare two prototypical metal foam electrocatalysts applied to the transform...
The foreseeable worldwide energy and environmental challenges demand renewable alternative sources, ...
The electroreduction of CO2 (CO2RR) is a promising strategy toward sustainable fuels. Cu is the only...
The direct electrochemical conversion of carbon dioxide (CO2) into multi‐carbon (C2+) products still...
Numerous insights of the structure–electrochemical activity relationship of nanocatalysts have been ...