To expedite the marketing of direct formic acid fuel cells, a peerless inexpensive binary FeOx/Pt nanocatalyst was proposed for formic acid electro-oxidation (FAO). The roles of both catalytic ingredients (FeOx and Pt) were inspired by testing the catalytic performance of FAO at the FeOx/Au and FeOx/GC analogies. The deposition of FeOx proceeded electrochemically with a post‐activating step that identified the catalyst’s structure and performance. With a proper adaptation for the deposition and activation processes, the FeOx/Pt nanocatalyst succeeded to mitigate the typical CO poisoning that represents the principal element deteriorating the catalytic performance of the direct formic acid fuel cells. It also provided a higher (eightfold) ca...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
The electrocatalytic oxidation of formic acid at a gold electrode functionalized with FePt nanoparti...
To quickly move the formic acid (FA) fuel cells closer to a real commercialization, an inexpensive, ...
To quickly move the formic acid (FA) fuel cells closer to a real commercialization, an inexpensive, ...
To quickly move the formic acid (FA) fuel cells closer to a real commercialization, an inexpensive, ...
A NiOx/Pt nanostructured catalyst was developed on a glassy carbon substrate that was functionalized...
This study addresses formic acid (FA) electro-oxidation (FAO) at a binary catalyst composed of palla...
AbstractThe electro-oxidation of formic acid (an essential reaction in direct formic acid fuel cells...
Formic acid (FA) electro-oxidation (FAO) was investigated at a binary catalyst composed of palladium...
Due to their high electrocatalytic activity, Pt-based materials are widely investigated as electroca...
Due to their high electrocatalytic activity, Pt-based materials are widely investigated as electroca...
Due to their high electrocatalytic activity, Pt-based materials are widely investigated as electroca...
Direct Formic Acid fuel cells (DFAFCs) can enhance the efficiency of portable devices that currently...
AbstractThe current study proposes a novel binary catalyst system (composed of metal/metal oxide nan...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
The electrocatalytic oxidation of formic acid at a gold electrode functionalized with FePt nanoparti...
To quickly move the formic acid (FA) fuel cells closer to a real commercialization, an inexpensive, ...
To quickly move the formic acid (FA) fuel cells closer to a real commercialization, an inexpensive, ...
To quickly move the formic acid (FA) fuel cells closer to a real commercialization, an inexpensive, ...
A NiOx/Pt nanostructured catalyst was developed on a glassy carbon substrate that was functionalized...
This study addresses formic acid (FA) electro-oxidation (FAO) at a binary catalyst composed of palla...
AbstractThe electro-oxidation of formic acid (an essential reaction in direct formic acid fuel cells...
Formic acid (FA) electro-oxidation (FAO) was investigated at a binary catalyst composed of palladium...
Due to their high electrocatalytic activity, Pt-based materials are widely investigated as electroca...
Due to their high electrocatalytic activity, Pt-based materials are widely investigated as electroca...
Due to their high electrocatalytic activity, Pt-based materials are widely investigated as electroca...
Direct Formic Acid fuel cells (DFAFCs) can enhance the efficiency of portable devices that currently...
AbstractThe current study proposes a novel binary catalyst system (composed of metal/metal oxide nan...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
The electrocatalytic oxidation of formic acid at a gold electrode functionalized with FePt nanoparti...