Search Results - "MUSTAIN, William E."
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Achieving High‐Performance and 2000 h Stability in Anion Exchange Membrane Fuel Cells by Manipulating Ionomer Properties and Electrode Optimization
Published in Advanced energy materials (01-10-2020)“…The primary function of the ionomers that are incorporated into fuel cell electrode catalyst layers is to provide pathways for ion transport between the…”
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2
High Stability, High Activity Pt/ITO Oxygen Reduction Electrocatalysts
Published in Journal of the American Chemical Society (16-01-2013)“…Sn-doped indium oxide (ITO) nanoparticles (NPs) were conceived as a high stability noncarbon support for Pt NPs, and the activity and stability of Pt/ITO for…”
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3
The Effect of Ambient Carbon Dioxide on Anion‐Exchange Membrane Fuel Cells
Published in ChemSusChem (09-04-2018)“…Over the past 10 years, there has been a surge of interest in anion‐exchange membrane fuel cells (AEMFCs) as a potentially lower cost alternative to…”
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Poly(bis-arylimidazoliums) possessing high hydroxide ion exchange capacity and high alkaline stability
Published in Nature communications (24-05-2019)“…Solid polymer electrolyte electrochemical energy conversion devices that operate under highly alkaline conditions afford faster reaction kinetics and the…”
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5
High-performing commercial Fe–N–C cathode electrocatalyst for anion-exchange membrane fuel cells
Published in Nature energy (05-08-2021)“…To reduce the cost of fuel cell stacks and systems, it is important to create commercial catalysts that are free of platinum group metals (PGMs). To do this,…”
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6
Activity and durability of Pt-Ni nanocage electocatalysts in proton exchange membrane fuel cells
Published in Applied catalysis. B, Environmental (01-04-2017)“…[Display omitted] •Pt-Ni nanocages were investigated as catalysts for PEM fuel cells.•Pt-Ni nanocages showed higher ex-situ and in-situ ORR activity than…”
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7
Using operando techniques to understand and design high performance and stable alkaline membrane fuel cells
Published in Nature communications (16-07-2020)“…There is a need to understand the water dynamics of alkaline membrane fuel cells under various operating conditions to create electrodes that enable high…”
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Influence of the ionomer/carbon ratio for low-Pt loading catalyst layer prepared by reactive spray deposition technology
Published in Journal of power sources (01-06-2015)“…Proton exchange membrane fuel cell (PEMFC) catalyst layers (CLs) were fabricated by direct deposition of the catalyst onto Nafion® membranes using reactive…”
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9
Structural and Electrochemical Studies of Pt Clusters Supported on High-Surface-Area Tungsten Carbide for Oxygen Reduction
Published in ACS catalysis (04-03-2011)“…High-surface-area tungsten carbide (WC) was synthesized via a molten solvent route and investigated as a noncarbon electrocatalyst support for nanosized Pt…”
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10
Synthesis of Nanosize Tungsten Oxide and Its Evaluation as an Electrocatalyst Support for Oxygen Reduction in Acid Media
Published in ACS catalysis (02-03-2012)“…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…”
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Electrocatalytic Activity and Stability of Pt clusters on State-of-the-Art Supports: A Review
Published in Catalysis reviews. Science and engineering (01-07-2011)“…Instability of supported Pt clusters due to limited bonding with conventional carbon supports and carbon dissolution leads to significant cathode performance…”
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12
Explaining the role and mechanism of carbon matrices in enhancing reaction reversibility of metal oxide anodes for high performance Li ion batteries
Published in Carbon (New York) (01-04-2018)“…Using NiO as a representative oxide, it is shown that the inter-particle electronic conductivity in lithium battery anodes can be drastically enhanced by…”
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13
Effect of hydroxide and carbonate alkaline media on anion exchange membranes
Published in Journal of power sources (01-11-2010)“…The effect of hydroxide and carbonate alkaline environments on the chemical stability and ionic conductivity of five commercially available anion exchange…”
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14
Catalytic Advantages, Challenges, and Priorities in Alkaline Membrane Fuel Cells
Published in ACS catalysis (03-01-2020)“…Recently, anion exchange membrane fuel cells (AEMFCs) have seen a significant growth in research and practical interest as the achievable current density, peak…”
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15
Effect of CO2, HCO3― and CO3―2 on oxygen reduction in anion exchange membrane fuel cells
Published in Electrochimica acta (01-02-2010)Get full text
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16
High-Performing PGM-Free AEMFC Cathodes from Carbon-Supported Cobalt Ferrite Nanoparticles
Published in Catalysts (01-03-2019)“…Efficient and durable non-precious metal electrocatalysts for the oxygen reduction reaction (ORR) are highly desirable for several electrochemical devices,…”
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Understanding how single-atom site density drives the performance and durability of PGM-free Fe–N–C cathodes in anion exchange membrane fuel cells
Published in Materials today advances (01-12-2021)“…One of the most important needs for the future of low-cost fuel cells is the development of highly active platinum group metal (PGM)-free catalysts. For the…”
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18
CoPdx oxygen reduction electrocatalysts for polymer electrolyte membrane and direct methanol fuel cells
Published in Electrochimica acta (2007)“…The electrochemical activity of carbon-supported cobalt-palladium alloy electrocatalysts of various compositions have been investigated for the oxygen…”
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19
Highly active and durable Pd-Cu catalysts for oxygen reduction in alkaline exchange membrane fuel cells
Published in Frontiers in Energy (01-09-2017)“…A Pd-Cu catalyst, with primary B2-type phase, supported by VulcanXC-7R carbon was synthesized via a solvothermal method. The catalysts were physically and…”
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Effects of pore structure in nitrogen functionalized mesoporous carbon on oxygen reduction reaction activity of platinum nanoparticles
Published in Carbon (New York) (01-08-2013)“…Nitrogen-doped mesoporous carbons (NMCs) with ordered to disordered pore structures were fabricated on SBA-15 modified with different concentrations of…”
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