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2022-130 PM-BASED CATALYST WITH TRANSITION ULTRAFINE METAL-OXIDE CORES
Summary: UCLA researchers in the Department of Materials Science and Engineering have developed a method to synthesize uniform Pt-based catalyst nanoparticles with ultralow base transition metal content for fuel cell applications. Background: Ultrafine platinum (Pt)-based catalysts with ultralow base transition metal content can provide high fuel...
Published: 7/19/2023
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Inventor(s):
Yu Huang
,
Xiangfeng Duan
,
Bosi Peng
Keywords(s):
Catalysts
,
Energy Generation, Transmission, or Storage
,
Fuel Cell
,
Fuel Cell Membrane Electrode Assembly
,
Nanomaterials
,
Nanoparticles
,
Platinum
Category(s):
Chemical > Catalysts
,
Materials > Nanotechnology
,
Materials > Functional Materials
,
Chemical > Synthesis
,
Energy & Environment > Energy Storage
,
Energy & Environment > Energy Storage > Fuel Cells
2021-295 Protected Ultrafine Catalysts, Including Pt-Based Catalysts for Fuel Cell Applications
SUMMARY: UCLA researchers in the Department of Materials Science and Engineering developed a strategy to synthesize ultrafine carbon layers to protect nanocatalysts which are essential for the development of fuel cell technology. BACKGROUND: Platinum catalysts are essential for use in hydrogen fuel cell technologies to cleanly and efficiently produce...
Published: 7/19/2023
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Inventor(s):
Yu Huang
,
Zipeng Zhao
,
Xiangfeng Duan
,
Zeyan Liu
Keywords(s):
Carbon Nanotube
,
Catalysts
,
Energy Efficiency
,
Energy Generation, Transmission, or Storage
,
Fuel Cell
,
Fuel Cell Membrane Electrode Assembly
,
Nanomaterials
,
Platinum
Category(s):
Materials > Membranes
,
Materials
,
Materials > Nanotechnology
,
Chemical > Catalysts
,
Energy & Environment > Energy Storage > Batteries
,
Energy & Environment > Energy Storage > Fuel Cells