Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to their low cost, tunable catalytic activity and selectivity, and well-dispersed morphologies. To improve the electrocatalytic performance of such systems, it is critical to gain a detailed understanding of their structure and properties through advanced characterization. In situ X-ray absorption spectroscopy (XAS) serves as a powerful tool to probe both the active sites and structural evolution of catalytic materials under reaction conditions. In this review, we firstly provide an overview of the fundamental concepts of XAS and then comprehensively review the setup and application of in situ XAS, introducing electrochemical XAS cells, experimental...
International audienceTo advance the widespread implementation of electrochemical energy storage and...
Atomically dispersed transition metal-nitrogen-carbon catalysts are emerging as low-cost electrocata...
Implementation of chemical energy storage for a sustainable energy supply requires the rational impr...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
Nonnoble metal catalysts are low-cost alternatives to Pt for the oxygen reduction reactions (ORRs), ...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
An in situ electrochemical X-ray absorption spectroscopy (XAS) cell has been fabricated that enables...
Single-atom catalysts with full utilization of metal centers can bridge the gap between molecular an...
Published: January 5, 2017Carbon-based nanomaterials have been widely studied as promising electroca...
During the last decades, X-ray absorption spectroscopy (XAS) has become an indispensable method for ...
Developing low-cost electrocatalysts to replace precious Ir-based materials is key for oxygen evolut...
The electrocatalytic oxygen reduction reaction (ORR) is the vital process at the cathode of next-gen...
Identifying the catalytically active site(s) in the oxygen reduction reaction (ORR), under real-time...
Implementation of chemical energy storage for a sustainable energy supply requires the rational impr...
International audienceTo advance the widespread implementation of electrochemical energy storage and...
Atomically dispersed transition metal-nitrogen-carbon catalysts are emerging as low-cost electrocata...
Implementation of chemical energy storage for a sustainable energy supply requires the rational impr...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
Metal/nitrogen-doped carbons (M−N−C) are promising candidates as oxygen electrocatalysts due to thei...
Nonnoble metal catalysts are low-cost alternatives to Pt for the oxygen reduction reactions (ORRs), ...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
An in situ electrochemical X-ray absorption spectroscopy (XAS) cell has been fabricated that enables...
Single-atom catalysts with full utilization of metal centers can bridge the gap between molecular an...
Published: January 5, 2017Carbon-based nanomaterials have been widely studied as promising electroca...
During the last decades, X-ray absorption spectroscopy (XAS) has become an indispensable method for ...
Developing low-cost electrocatalysts to replace precious Ir-based materials is key for oxygen evolut...
The electrocatalytic oxygen reduction reaction (ORR) is the vital process at the cathode of next-gen...
Identifying the catalytically active site(s) in the oxygen reduction reaction (ORR), under real-time...
Implementation of chemical energy storage for a sustainable energy supply requires the rational impr...
International audienceTo advance the widespread implementation of electrochemical energy storage and...
Atomically dispersed transition metal-nitrogen-carbon catalysts are emerging as low-cost electrocata...
Implementation of chemical energy storage for a sustainable energy supply requires the rational impr...