This report describes the electrochemical behavior of a family of "core-shell" electrocatalysts consisting of a carbon nitride (CN) "shell" matrix and a "core" of conducting carbon nanoparticles (NPs). The CN "shell" matrix embeds PdCoNi alloy NPs and covers homogeneously the carbon "core". The chemical composition of the materials is determined by inductively-coupled plasma atomic emission spectroscopy (ICP-AES) and microanalysis; the structure is studied by powder X-ray diffraction (powder XRD); the morphology is investigated by high-resolution transmission electron microscopy (HR-TEM). The surface activity and structure are probed by CO stripping. The oxygen reduction reaction (ORR) kinetics, reaction mechanism, and tolerance towards con...
This report describes two new synthesis protocols for the preparation of \u2...
This paper reports the preparation of two families of platinum-free carbon nitride electrocatalysts ...
In this report, the preparation of Fe-carbon nitride (CN)-based electrocatalysts (ECs) with a"core-s...
This report describes the electrochemical behavior of a family of "core-shell" electrocatalysts cons...
In this report, the preparation of Fe-carbon nitride (CN)-based electrocatalysts (ECs) with a “core-...
This work introduces a new family of “core-shell” carbon nitride nano-electrocatalysts that consist...
This report describes the preparation of two Pd-based carbon nitride electrocatalysts for the oxygen...
This report describes the development and the optimization of new synthesis routes yielding electroc...
The interplay between morphology and electrochemical performance of a new class of "core-shell" elec...
The interplay between morphology and electrochemical performance of a new class of "core-shell" elec...
This report describes the preparation of new bimetal carbon nitride (CN)-based 'core-shell' electroc...
The oxygen reduction reaction (ORR) plays a crucial role in the operation of a number of advanced en...
This report shows the synthesis of a new family of “core-shell” carbon nitride (CN)based electrocata...
The oxygen reduction reaction (ORR) is one of the fundamental electrochemical processes involved in ...
The high efficiency, power density and compatibility with the environment of proton exchange membran...
This report describes two new synthesis protocols for the preparation of \u2...
This paper reports the preparation of two families of platinum-free carbon nitride electrocatalysts ...
In this report, the preparation of Fe-carbon nitride (CN)-based electrocatalysts (ECs) with a"core-s...
This report describes the electrochemical behavior of a family of "core-shell" electrocatalysts cons...
In this report, the preparation of Fe-carbon nitride (CN)-based electrocatalysts (ECs) with a “core-...
This work introduces a new family of “core-shell” carbon nitride nano-electrocatalysts that consist...
This report describes the preparation of two Pd-based carbon nitride electrocatalysts for the oxygen...
This report describes the development and the optimization of new synthesis routes yielding electroc...
The interplay between morphology and electrochemical performance of a new class of "core-shell" elec...
The interplay between morphology and electrochemical performance of a new class of "core-shell" elec...
This report describes the preparation of new bimetal carbon nitride (CN)-based 'core-shell' electroc...
The oxygen reduction reaction (ORR) plays a crucial role in the operation of a number of advanced en...
This report shows the synthesis of a new family of “core-shell” carbon nitride (CN)based electrocata...
The oxygen reduction reaction (ORR) is one of the fundamental electrochemical processes involved in ...
The high efficiency, power density and compatibility with the environment of proton exchange membran...
This report describes two new synthesis protocols for the preparation of \u2...
This paper reports the preparation of two families of platinum-free carbon nitride electrocatalysts ...
In this report, the preparation of Fe-carbon nitride (CN)-based electrocatalysts (ECs) with a"core-s...