The derivation of successful fuel cell technologies requires the development of more effective, cheaper, and poison-resistant electrocatalysts for both the anode (H{sub 2} oxidation in the presence of small amounts of CO from the reforming of carbonaceous fuels) and the cathode (reduction of oxygen in the presence of carried-over fuel). The proposed work is tightly focused on one specific aspect of electrocatalysis; the fundamental role(s) played by nanoscale (1-2 nm thick) oxide (''passive'') films that form on the electrocatalyst surfaces above substrate-dependent, critical potentials, on charge transfer reactions, particularly at elevated temperatures (25 C < T < 200 C). Once the role(s) of these films is (are) adequately understoo...
In the overall field of heterogeneous electrocatalysts, extended surface area catalysts demonstrate ...
In a recent report, we demonstrated that few-nanometer-thick yttria-stabilized zirconia (YSZ) coatin...
We describe three new methods of metal monolayer/multilayer deposition that make possible syntheses ...
Various bifunctional metal-oxide composites have recently been proposed as advanced hydrogen oxidati...
Miniature solid oxide fuel cells (μ-SOFCs) to be operated at temperatures between 400 and 600◦C requ...
Solid oxide cells (SOCs) can operate with high efficiency in two ways—as fuel cells, oxidizing a fue...
A long term challenge for society is to develop sustainable energy systems to reduce the dependence ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
International audienceThe direct electrochemical conversion of chemical energy in low-temperature fu...
Although the amount of oxygen evolution electrocatalyst is a factor determining its efficiency, its ...
Highly active metal nanoparticles are desired to serve in high-temperature electrocatalysis, for exa...
Metal oxides are attractive candidates for low cost, earth-abundant electrocatalysts. However, owing...
Fuel cells, especially low temperature fuel cells are clean energy devices that are expected to help...
Electrochemical devices, such as fuel cells and electrolysers, are said to be at the forefront of a ...
Solid Oxide Fuel Cells are high temperature, solid-state, electrochemical devices that can convert f...
In the overall field of heterogeneous electrocatalysts, extended surface area catalysts demonstrate ...
In a recent report, we demonstrated that few-nanometer-thick yttria-stabilized zirconia (YSZ) coatin...
We describe three new methods of metal monolayer/multilayer deposition that make possible syntheses ...
Various bifunctional metal-oxide composites have recently been proposed as advanced hydrogen oxidati...
Miniature solid oxide fuel cells (μ-SOFCs) to be operated at temperatures between 400 and 600◦C requ...
Solid oxide cells (SOCs) can operate with high efficiency in two ways—as fuel cells, oxidizing a fue...
A long term challenge for society is to develop sustainable energy systems to reduce the dependence ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
International audienceThe direct electrochemical conversion of chemical energy in low-temperature fu...
Although the amount of oxygen evolution electrocatalyst is a factor determining its efficiency, its ...
Highly active metal nanoparticles are desired to serve in high-temperature electrocatalysis, for exa...
Metal oxides are attractive candidates for low cost, earth-abundant electrocatalysts. However, owing...
Fuel cells, especially low temperature fuel cells are clean energy devices that are expected to help...
Electrochemical devices, such as fuel cells and electrolysers, are said to be at the forefront of a ...
Solid Oxide Fuel Cells are high temperature, solid-state, electrochemical devices that can convert f...
In the overall field of heterogeneous electrocatalysts, extended surface area catalysts demonstrate ...
In a recent report, we demonstrated that few-nanometer-thick yttria-stabilized zirconia (YSZ) coatin...
We describe three new methods of metal monolayer/multilayer deposition that make possible syntheses ...