It has been long thought that Fe–N–C structure, where Fe is bonded with an electronegative heteroatom N, plays a key role as nonprecious metal catalyst for oxygen reduction reaction (ORR) in fuel cells. However, electrocatalytic activity of Fe bonded with electropositive heteroatom P has never been considered for ORR. Herein we report the electrocatalytic activity for ORR of new Fe–P–C
Development of cost-effective electrocatalysts as an alternative to platinum for oxygen reduction re...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...
Controllable design and synthesis of catalysts with the target active sites are extremely important ...
Carbon-supported non-noble metal catalysts with Fe as the metal and tripyridyl triazine (TPTZ) as th...
In order to reduce the overall system cost, the development of inexpensive, high-performance and du...
The oxygen reduction reaction (ORR) is a key reaction in polymer electrolyte fuel cells and metal–ai...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Understanding the origin of high activity of Fe–N–C electrocatalysts in oxygen reduction reaction (O...
A sustainable Iron (Fe), Nitrogen (N) co-doped high performance Fe-N-x/C electrocatalyst for oxygen ...
Abstract Controllable design and synthesis of catalysts with the target active sites are extremely i...
In an effort to move away from fossil fuels and towards cleaner energy, the cleaner energy options n...
International audienceDeveloping efficient and inexpensive catalysts for the sluggish oxygen reducti...
International audienceEvaluation of the electrocatalyst performance data includes an electrode prepa...
Detailed understanding of the nature of the active centers in non-precious-metal-based electrocataly...
We report a nonpyrolytic chemical synthesis of model iron–nitrogen–carbon electrocatalysts for oxyge...
Development of cost-effective electrocatalysts as an alternative to platinum for oxygen reduction re...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...
Controllable design and synthesis of catalysts with the target active sites are extremely important ...
Carbon-supported non-noble metal catalysts with Fe as the metal and tripyridyl triazine (TPTZ) as th...
In order to reduce the overall system cost, the development of inexpensive, high-performance and du...
The oxygen reduction reaction (ORR) is a key reaction in polymer electrolyte fuel cells and metal–ai...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Understanding the origin of high activity of Fe–N–C electrocatalysts in oxygen reduction reaction (O...
A sustainable Iron (Fe), Nitrogen (N) co-doped high performance Fe-N-x/C electrocatalyst for oxygen ...
Abstract Controllable design and synthesis of catalysts with the target active sites are extremely i...
In an effort to move away from fossil fuels and towards cleaner energy, the cleaner energy options n...
International audienceDeveloping efficient and inexpensive catalysts for the sluggish oxygen reducti...
International audienceEvaluation of the electrocatalyst performance data includes an electrode prepa...
Detailed understanding of the nature of the active centers in non-precious-metal-based electrocataly...
We report a nonpyrolytic chemical synthesis of model iron–nitrogen–carbon electrocatalysts for oxyge...
Development of cost-effective electrocatalysts as an alternative to platinum for oxygen reduction re...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...
Controllable design and synthesis of catalysts with the target active sites are extremely important ...