Non-noble metal electrocatalysts not only are a solution to limited resources but also achieve higher efficiency for fuel cells, especially in alkaline media such as alkaline membrane fuel cells. Co-polypyrrole-based electrocatalysts provide high oxygen reduction reaction (ORR) reactivity, but the active sites and reaction mechanism have yet to be elucidated fully. In this study, ex situ and in situ synchrotron characterization and theoretical study have been combined to evaluate the ORR mechanism on two possible active sites consisting of Co coordinated with pyrrolic nitrogen and Co coordinated with pyridinic nitrogen
The stability of pyrolyzed Mn–Co/polypyrrole (PPy) nanocomposites towards the Oxygen Reduction React...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Fuel cells are regarded as one of the most promising candidates for stationary and mobile power gene...
A series of pyrolyzed carbon-supported cobalt-polypyrrole, Co-PPy-TsOH/C, were prepared with various...
A new nanocomposite catalyst consisting of high-loading cobalt oxide (CoO) on nitrogen-doped reduced...
This chapter presents theoretical studies (mainly with first principle methods) of non-noble metal e...
A theoretical study of the oxygen reduction mechanism catalyzed by cobalt-polypyrrole is investigate...
The fuel cell, as one of the most promising electrochemical devices, is sustainable, clean, and envi...
A novel nanowire-structured polypyrrole-cobalt composite, PPy-CTAB-Co, is successfully synthesized w...
In this work, we report the investigation of Fe and Co triphenylcorrole complexes supported on two d...
The chemical structure of non-platinum electrocatalysts obtained from cobalt porphyrins (CoTMPP or C...
International audienceOne of the major limitations yet to the global implementation of polymer elect...
Electrochemical CO2 reduction reaction (CO2RR) has attracted a lot of interest as a highly potential...
The polymer electrolyte fuel cell (PEFC) is a strong contender in becoming a major alternative sourc...
Fuel cells are considered as the only viable solution for long-range electromobility, but very rare ...
The stability of pyrolyzed Mn–Co/polypyrrole (PPy) nanocomposites towards the Oxygen Reduction React...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Fuel cells are regarded as one of the most promising candidates for stationary and mobile power gene...
A series of pyrolyzed carbon-supported cobalt-polypyrrole, Co-PPy-TsOH/C, were prepared with various...
A new nanocomposite catalyst consisting of high-loading cobalt oxide (CoO) on nitrogen-doped reduced...
This chapter presents theoretical studies (mainly with first principle methods) of non-noble metal e...
A theoretical study of the oxygen reduction mechanism catalyzed by cobalt-polypyrrole is investigate...
The fuel cell, as one of the most promising electrochemical devices, is sustainable, clean, and envi...
A novel nanowire-structured polypyrrole-cobalt composite, PPy-CTAB-Co, is successfully synthesized w...
In this work, we report the investigation of Fe and Co triphenylcorrole complexes supported on two d...
The chemical structure of non-platinum electrocatalysts obtained from cobalt porphyrins (CoTMPP or C...
International audienceOne of the major limitations yet to the global implementation of polymer elect...
Electrochemical CO2 reduction reaction (CO2RR) has attracted a lot of interest as a highly potential...
The polymer electrolyte fuel cell (PEFC) is a strong contender in becoming a major alternative sourc...
Fuel cells are considered as the only viable solution for long-range electromobility, but very rare ...
The stability of pyrolyzed Mn–Co/polypyrrole (PPy) nanocomposites towards the Oxygen Reduction React...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Fuel cells are regarded as one of the most promising candidates for stationary and mobile power gene...