International audienceEvaluation of the electrocatalyst performance data includes an electrode preparation step. Herein, we compare the structural composition of Fe–N–C materials, used to electrocatalyze the oxygen reduction reaction in proton-exchange membrane fuel cells, before and after catalyst layer preparation. The effects of this step on the electronic structure and local coordination of Fe were investigated by X-ray absorption (XAS) and emission spectroscopies (XES), for Fe–N–C materials prepared via different synthetic routes. This work underlines the importance of determining the Fe–N–C catalyst structure in the prepared electrode for further studies of the structure–activity–stability correlations
Iron and nitrogen doped on carbon (Fe−N/C) catalysts have emerged as promising nonprecious...
Understanding the origin of high activity of Fe–N–C electrocatalysts in oxygen reduction reaction (O...
In order to reduce the overall system cost, the development of inexpensive, high-performance and du...
International audienceEvaluation of the electrocatalyst performance data includes an electrode prepa...
International audienceEvaluation of the electrocatalyst performance data includes an electrode prepa...
The applicability of analyzing by Mößbauer spectroscopy the structural changes of Fe–N–C catalysts ...
Three catalysts for the electroreduction of oxygen have been prepared by pyrolyzing between 400 and ...
The development of highly active and stable non-noble metal catalysts (NNMC) for the oxygen reductio...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...
The paper presents a new results on the bonding environment (coordination number and geometry) and o...
Abstract Fe‐N‐C catalysts represent very promising cathode catalysts for polymer electrolyte fuel ce...
It has been long thought that Fe–N–C structure, where Fe is bonded with an electronegative heteroato...
There remain great challenges in exploring cost-effective and highly efficient non-noble metal elect...
Fe-N-C catalysts synthesized by pyrolysis of Fe and N precursors have been intensively studied due t...
The paper presents a new results on the bonding environment (coordination number and geometry) and o...
Iron and nitrogen doped on carbon (Fe−N/C) catalysts have emerged as promising nonprecious...
Understanding the origin of high activity of Fe–N–C electrocatalysts in oxygen reduction reaction (O...
In order to reduce the overall system cost, the development of inexpensive, high-performance and du...
International audienceEvaluation of the electrocatalyst performance data includes an electrode prepa...
International audienceEvaluation of the electrocatalyst performance data includes an electrode prepa...
The applicability of analyzing by Mößbauer spectroscopy the structural changes of Fe–N–C catalysts ...
Three catalysts for the electroreduction of oxygen have been prepared by pyrolyzing between 400 and ...
The development of highly active and stable non-noble metal catalysts (NNMC) for the oxygen reductio...
The electrochemical oxygen reduction reaction (ORR) is a critical reaction in many energy conversion...
The paper presents a new results on the bonding environment (coordination number and geometry) and o...
Abstract Fe‐N‐C catalysts represent very promising cathode catalysts for polymer electrolyte fuel ce...
It has been long thought that Fe–N–C structure, where Fe is bonded with an electronegative heteroato...
There remain great challenges in exploring cost-effective and highly efficient non-noble metal elect...
Fe-N-C catalysts synthesized by pyrolysis of Fe and N precursors have been intensively studied due t...
The paper presents a new results on the bonding environment (coordination number and geometry) and o...
Iron and nitrogen doped on carbon (Fe−N/C) catalysts have emerged as promising nonprecious...
Understanding the origin of high activity of Fe–N–C electrocatalysts in oxygen reduction reaction (O...
In order to reduce the overall system cost, the development of inexpensive, high-performance and du...