WO3 was investigated as a possible support material for monolayer Pt ORR electrocatalysts in acid electrolyte. It was found that as-prepared Pt/WO3 showed enhanced activity for the ORR and superior electron transfer ability compared to conventional Pt/C and bulk polycrystalline Pt. However, similar to other tungsten derived supports, most notably WC, the Pt/WO3 electrocatalyst showed significant performance degradation that was tied directly to the formation of water-soluble hydrogen tungsten bronze (HxWO3) on the support surface that was identified by X-ray photoelectron spectroscopy (XPS) and transmission electron microscopy (TEM). This information, combined with previous work by our group on WC supports, are also combined to propose a se...
Nanocrystalline tungsten carbide (WC) with a high surface area and containing minimal free carbon wa...
WC was investigated as an electrocatalyst support material for a monolayer-equivalent of Pt and the ...
The growth of a promising material system for high-temperature polymer-electrolyte-membrane-fuel, ce...
WO3 was investigated as a possible support material for monolayer Pt ORR electrocatalysts in acid el...
Platinum nanocatalysts on two tungsten based supports have been synthesized and characterized as cat...
Durability is an important issue in proton-exchange membrane fuel cells (PEMFCs). One of the major c...
In this paper, we report that WOx containing nanoalloys exhibit stable electrocatalytic performance ...
Platinum nanocatalyst at nano-tungsten carbide was synthesized, characterized and tested for oxygen ...
Tungsten based support was prepared by polycondensation of resorcinol and formaldehyde from ammonium...
ybrid supports composed of chemically-reduced graphene-oxide-aligned with tungsten oxide nanowires a...
The electrochemical energy conversion devices, fuel cell, have received considerable attention over ...
High-surface-area tungsten carbide (WC) was synthesized via a molten solvent route and investigated ...
Besides high fabrication costs, degradation effects are a major drawback of high temperature proton ...
Electrocatalysts for hydrogen oxidation and methanol oxidation are the heart of the proton exchange ...
Tungsten oxide (WO3 · 0.33H2O) networks and nanorods were prepared by a hydrothermal method. Platinu...
Nanocrystalline tungsten carbide (WC) with a high surface area and containing minimal free carbon wa...
WC was investigated as an electrocatalyst support material for a monolayer-equivalent of Pt and the ...
The growth of a promising material system for high-temperature polymer-electrolyte-membrane-fuel, ce...
WO3 was investigated as a possible support material for monolayer Pt ORR electrocatalysts in acid el...
Platinum nanocatalysts on two tungsten based supports have been synthesized and characterized as cat...
Durability is an important issue in proton-exchange membrane fuel cells (PEMFCs). One of the major c...
In this paper, we report that WOx containing nanoalloys exhibit stable electrocatalytic performance ...
Platinum nanocatalyst at nano-tungsten carbide was synthesized, characterized and tested for oxygen ...
Tungsten based support was prepared by polycondensation of resorcinol and formaldehyde from ammonium...
ybrid supports composed of chemically-reduced graphene-oxide-aligned with tungsten oxide nanowires a...
The electrochemical energy conversion devices, fuel cell, have received considerable attention over ...
High-surface-area tungsten carbide (WC) was synthesized via a molten solvent route and investigated ...
Besides high fabrication costs, degradation effects are a major drawback of high temperature proton ...
Electrocatalysts for hydrogen oxidation and methanol oxidation are the heart of the proton exchange ...
Tungsten oxide (WO3 · 0.33H2O) networks and nanorods were prepared by a hydrothermal method. Platinu...
Nanocrystalline tungsten carbide (WC) with a high surface area and containing minimal free carbon wa...
WC was investigated as an electrocatalyst support material for a monolayer-equivalent of Pt and the ...
The growth of a promising material system for high-temperature polymer-electrolyte-membrane-fuel, ce...