Direct Formic Acid fuel cells (DFAFCs) can enhance the efficiency of portable devices that currently rely on battery power; however, current DFAFC anode catalysts either have high parasitic overpotentials and/or deactivate over time. One of the current state-of-the-art anode catalysts are carbon supported platinum nanoparticles modified with a sub-monolayer of bismuth (Pt/C-Bi) that are deactivated during potential cycling. When using bismuth as a Pt catalyst activator, there is a tendency to lose performance over time as the bismuth oxidizes and is lost from the Pt surface. The objective of this research project was to replace bismuth with strongly adsorbed Citric Acid (C_6 H_8 O_7) to improve the performance durability of the catalyst. Th...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...
Formic acid oxidation was studied on platinum-bismuth deposits on glassy carbon (GC) substrate. The ...
To expedite the marketing of direct formic acid fuel cells, a peerless inexpensive binary FeOx/Pt na...
The use of direct formic acid fuel cells (DFAFCs) in portable electronic devices can improve availab...
The use of direct formic acid fuel cells (DFAFCs) in portable electronic devices can improve availab...
© 2019 Elsevier B.V. Formic acid is a chemical with a simple molecular structure containing hydrogen...
The field of heterogeneous catalysis, specifically catalysis on bimetallic surfaces, has seen many a...
Formic acid oxidation was studied on platinum-coated bismuth deposits on glassy carbon substrate. Th...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
The field of heterogeneous catalysis, specifically catalysis on bimetallic surfaces, has seen many a...
Formic acid oxidation was studied on platinum-coated bismuth deposits on glassy carbon substrate. Th...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
Formic acid oxidation was examined on platinum-bismuth deposits on glassy carbon substrate prepared ...
Formic acid oxidation was examined on platinum-bismuth deposits on glassy carbon substrate prepared ...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...
Formic acid oxidation was studied on platinum-bismuth deposits on glassy carbon (GC) substrate. The ...
To expedite the marketing of direct formic acid fuel cells, a peerless inexpensive binary FeOx/Pt na...
The use of direct formic acid fuel cells (DFAFCs) in portable electronic devices can improve availab...
The use of direct formic acid fuel cells (DFAFCs) in portable electronic devices can improve availab...
© 2019 Elsevier B.V. Formic acid is a chemical with a simple molecular structure containing hydrogen...
The field of heterogeneous catalysis, specifically catalysis on bimetallic surfaces, has seen many a...
Formic acid oxidation was studied on platinum-coated bismuth deposits on glassy carbon substrate. Th...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
The field of heterogeneous catalysis, specifically catalysis on bimetallic surfaces, has seen many a...
Formic acid oxidation was studied on platinum-coated bismuth deposits on glassy carbon substrate. Th...
Electro-catalytic oxidation of formic acid has a significant importance in fundamental research of s...
Formic acid oxidation was examined on platinum-bismuth deposits on glassy carbon substrate prepared ...
Formic acid oxidation was examined on platinum-bismuth deposits on glassy carbon substrate prepared ...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...
Direct formic acid fuel cells (DFAFC) are promising alternatives to hydrogen proton exchange membran...
Formic acid oxidation was studied on platinum-bismuth deposits on glassy carbon (GC) substrate. The ...
To expedite the marketing of direct formic acid fuel cells, a peerless inexpensive binary FeOx/Pt na...