研究実績の概要 |
We developed two types of single-atom catalysts for energy-related applications based on the successful development of 3D nanoporous graphene with tunable microstructure and physicochemical properties: 3D nanoporous graphene anchored with platinum atoms for electrochemical hydrogen production; and 3D nanoporous graphene co-anchored with nickel and copper atoms for the oxygen reduction reaction and high-performance rechargeable Zinc-air batteries. Energy devices have been developed that are highly efficient, have a high power density, and are sufficiently stable. Additionally, we released a review article summarizing our systematic study on the development, characterization, and application of 3D nanoporous graphene materials.
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現在までの達成度 (区分) |
現在までの達成度 (区分)
2: おおむね順調に進展している
理由
The purpose of this research is to develop multiscale 3D nanoporous graphene materials for a variety of functional applications. We have achieved the designable production of 3D nanoporous graphenes and investigated their applications for electrochemical energy storage over the last two years. This year, we expanded our focus to electrochemical energy conversions and developed advanced electrocatalysts using the 3D nanoporous graphene materials. As a result, our research proceeds smoothly as planned.
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