There has been growing interest in noncarbon supports for fuel cell reactions, especially for the oxygen reduction reaction (ORR) in alkaline media. Herein, we report a robust mesoporous titanium nitride (TiN) which is not only kinetically stable in alkaline media, but also electrochemically stable in the potential range of fuel cell operation. This binary nitride exhibits an order of magnitude higher electronic conductivity than carbon black. Bimetallic Ag-rich PtAg nanoalloy is selected as the catalyst for the ORR in alkaline media due to their superior activity and relatively low cost. TiN-supported Pt1Ag9 nanoalloy catalysts are synthesized by a new and efficient approach with KEt3BH as reducing agent and THF as solvent. Pt1Ag9/TiN exhi...
Nonprecious transition metal nitrides have attracted considerable attention as an alternative cataly...
Proton exchange membrane fuel cells (PEMFCs) are electrochemical energy devices which have become a ...
Pt-Sn anodic catalysts supported on multiwall carbon nanotubes, mesoporous carbon and Vulcan carbon ...
We designed a scaffold-like porous titanium nitride (TiN) nanotube (NT) as a catalyst support for Pt...
We report a robust noncarbon Ti<sub>0.5</sub>Cr<sub>0.5</sub>N support synthesized by an efficient s...
Monodispersed TiN nanoparticles with a narrow size distribution (7–23 nm) were synthesized using mes...
Transition metal nitrides of group 4-6 (Mo2N, W2N, NbN, Ta3N5, and TiN) were synthesized by the urea...
In the present study, titanium nitride which shows exceptional stability, extreme corrosion resistan...
The development of efficient catalyst materials that can drive high catalytic performance is challen...
In the present study, titanium nitride, TiN that possesses good electronic conductivity, high corros...
Alloying Pt electrocatalysts with the second transition metal (e. g., Fe, Co, Ni and Cu) is an effec...
Platinized TiN is shown to be a very good catalyst for the electrochemical oxidation of methanol; it...
The currently used carbon-based catalyst supports in polymer electrolyte membrane fuel cells (PEMFC)...
International audienceCarbon supported Pt-Sn bimetallic electrocatalysts with a Pt:Sn 90:10 atomic r...
One of the major challenges in fuel cell technologies, particularly for Proton Exchange Membrane Fue...
Nonprecious transition metal nitrides have attracted considerable attention as an alternative cataly...
Proton exchange membrane fuel cells (PEMFCs) are electrochemical energy devices which have become a ...
Pt-Sn anodic catalysts supported on multiwall carbon nanotubes, mesoporous carbon and Vulcan carbon ...
We designed a scaffold-like porous titanium nitride (TiN) nanotube (NT) as a catalyst support for Pt...
We report a robust noncarbon Ti<sub>0.5</sub>Cr<sub>0.5</sub>N support synthesized by an efficient s...
Monodispersed TiN nanoparticles with a narrow size distribution (7–23 nm) were synthesized using mes...
Transition metal nitrides of group 4-6 (Mo2N, W2N, NbN, Ta3N5, and TiN) were synthesized by the urea...
In the present study, titanium nitride which shows exceptional stability, extreme corrosion resistan...
The development of efficient catalyst materials that can drive high catalytic performance is challen...
In the present study, titanium nitride, TiN that possesses good electronic conductivity, high corros...
Alloying Pt electrocatalysts with the second transition metal (e. g., Fe, Co, Ni and Cu) is an effec...
Platinized TiN is shown to be a very good catalyst for the electrochemical oxidation of methanol; it...
The currently used carbon-based catalyst supports in polymer electrolyte membrane fuel cells (PEMFC)...
International audienceCarbon supported Pt-Sn bimetallic electrocatalysts with a Pt:Sn 90:10 atomic r...
One of the major challenges in fuel cell technologies, particularly for Proton Exchange Membrane Fue...
Nonprecious transition metal nitrides have attracted considerable attention as an alternative cataly...
Proton exchange membrane fuel cells (PEMFCs) are electrochemical energy devices which have become a ...
Pt-Sn anodic catalysts supported on multiwall carbon nanotubes, mesoporous carbon and Vulcan carbon ...