Platinum (Pt) alloy nanoparticles are used as catalysts in electrochemical cells to reduce oxygen to water and to oxidize hydrogen; the overall reaction converts chemical energy into electrical energy. These nanocatalysts are deposited on a carbon substrate and their catalytic function takes place in acid medium. This harsh environment causes an undesired reaction, which is the dissolution of the metal atoms into the acid medium; thus affecting the catalyst life. This dissertation aims to investigate the dissolution mechanism of fuel cell cathode catalysts at the atomic level starting from the oxygen reaction intermediates on the cathode catalyst surface and propose guidelines to improve cathode catalysts durability based on our proposed me...
In the pursuit of a hydrogen economy, extensive research has been directed at developing acidic and ...
In this dissertation, the oxygen reduction activity of metal nanoparticle electrocatalysts is improv...
Density functional theory (DFT) is used to study the reactivity of Pt and Pt-M (M: Pd, Co, Ni, V, an...
One of the most important challenges in low-temperature fuel cell technology is improving the cataly...
Platinum (Pt) alloy nanoparticles are used as catalysts in electrochemical cells to reduce oxygen to...
Pt-based alloy surfaces are used to catalyze the electrochemical oxygen reduction reaction (ORR), wh...
A remaining challenge for deployment of proton-exchange membrane fuel cells is the limited durabili...
In proton-exchange-membrane (PEM) fuel cells, electrochemical oxygen reduction reaction (ORR) on the...
textThe electrochemical oxygen reduction reaction (ORR) steps on a noble metal catalyst in an acidic...
To better understand and improve the cathode process for Proton exchange membrane fuel cell, we stud...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
textProton exchange membrane fuel cells (PEMFCs) have attracted great attention due to their high po...
In the last few years the quest towards a hydrogen based economy has intensified interest for effect...
Durability of carbon-supported platinum nanoparticle is one of the limiting factors for PEM fuel cel...
In the pursuit of a hydrogen economy, extensive research has been directed at developing acidic and ...
In this dissertation, the oxygen reduction activity of metal nanoparticle electrocatalysts is improv...
Density functional theory (DFT) is used to study the reactivity of Pt and Pt-M (M: Pd, Co, Ni, V, an...
One of the most important challenges in low-temperature fuel cell technology is improving the cataly...
Platinum (Pt) alloy nanoparticles are used as catalysts in electrochemical cells to reduce oxygen to...
Pt-based alloy surfaces are used to catalyze the electrochemical oxygen reduction reaction (ORR), wh...
A remaining challenge for deployment of proton-exchange membrane fuel cells is the limited durabili...
In proton-exchange-membrane (PEM) fuel cells, electrochemical oxygen reduction reaction (ORR) on the...
textThe electrochemical oxygen reduction reaction (ORR) steps on a noble metal catalyst in an acidic...
To better understand and improve the cathode process for Proton exchange membrane fuel cell, we stud...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
textProton exchange membrane fuel cells (PEMFCs) have attracted great attention due to their high po...
In the last few years the quest towards a hydrogen based economy has intensified interest for effect...
Durability of carbon-supported platinum nanoparticle is one of the limiting factors for PEM fuel cel...
In the pursuit of a hydrogen economy, extensive research has been directed at developing acidic and ...
In this dissertation, the oxygen reduction activity of metal nanoparticle electrocatalysts is improv...
Density functional theory (DFT) is used to study the reactivity of Pt and Pt-M (M: Pd, Co, Ni, V, an...