The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by using electrochemical analysis techniques and the result is applied to synthesize highly active and stable Fe-N-C catalyst for oxygen reduction reaction (ORR). We developed synthetic procedures to prepare three types of N-doped carbon model catalysts that are designed for systematic comparison of the porous structures. The difference in their catalytic activity is investigated in relation to the surface area and the electrochemical parameters. We found that macro- and mesoporous structures contribute to different stages of the reaction kinetics. The catalytic activity is further enhanced by loading the optimized amount of Fe to prepare Fe-N-C ca...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
N-doped carbon catalysts have attracted great attention as potential alternatives to expensive Pt-ba...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
Nitrogen-doped porous carbons containing atomically dispersed iron are prime candidates for substitu...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by usi...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
In this study, we present microporous carbon (MPC), hollow microporous carbon (HMC) and hierarchical...
N-doped carbon catalysts have attracted great attention as potential alternatives to expensive Pt-ba...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
Nitrogen-doped porous carbons containing atomically dispersed iron are prime candidates for substitu...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...