LDRD final report on synthesis of shape-and size-controlled platinum and platinum alloy nanostructures on carbon with improved durability. | |
Shelnutt, John Allen ; Garcia, Robert M. ; Song, Yujiang ; Moreno, Andres M. ; Stanis, Ronald J. | |
关键词: ALLOYS; CARBON; CARBON BLACK; ELECTRODES; IRRADIATION; LIPIDS; LIPOSOMES; MEMBRANES; NANOSTRUCTURES; NANOTUBES; PLATINUM; PLATINUM ALLOYS; PORPHYRINS; SYNTHESIS; TUNGSTEN Nanostructures.; Carbon compounds.; | |
DOI : 10.2172/966923 RP-ID : SAND2008-6834 PID : OSTI ID: 966923 Others : TRN: US200923%%80 |
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学科分类:材料科学(综合) | |
美国|英语 | |
来源: SciTech Connect | |
【 摘 要 】
This project is aimed to gain added durability by supporting ripening-resistant dendritic platinum and/or platinum-based alloy nanostructures on carbon. We have developed a new synthetic approach suitable for directly supporting dendritic nanostructures on VXC-72 carbon black (CB), single-walled carbon nanotubes (SWCNTs), and multi-walled carbon nanotubes (MWCNTs). The key of the synthesis is to creating a unique supporting/confining reaction environment by incorporating carbon within lipid bilayer relying on a hydrophobic-hydrophobic interaction. In order to realize size uniformity control over the supported dendritic nanostructures, a fast photocatalytic seeding method based on tin(IV) porphyrins (SnP) developed at Sandia was applied to the synthesis by using SnP-containing liposomes under tungsten light irradiation. For concept approval, one created dendritic platinum nanostructure supported on CB was fabricated into membrane electrode assemblies (MEAs) for durability examination via potential cycling. It appears that carbon supporting is essentially beneficial to an enhanced durability according to our preliminary results.
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