Search
  • 網站搜尋
亞洲知識產權資訊網為知識產權業界提供一個一站式網上交易平台,協助業界發掘知識產權貿易商機,並與環球知識產權業界建立聯繫。無論你是知識產權擁有者正在出售您的知識產權,或是製造商需要購買技術以提高操作效能,又或是知識產權配套服務供應商,你將會從本網站發掘到有用的知識產權貿易資訊。
返回搜索結果

High Stability PtNiX-M Electrochemical Catalyst


技術優勢

Facile synthesis to add transition metals to a PtNiN material  High stability and activity Reduces the amount of noble metal used  Extends the fuel cell lifetime  Post-synthesis treatment improves catalytic activity


技術應用

Catalysis  Fuel cell devices  MEA fuel cell component  Proton-exchange membrane (PEM) fuel cells


詳細技術說明

Researchers led by Professor Huang have developed an innovative and facile synthesis to introduce a transition metal (e.g., Cu, Co, Mn, Fe, Mo, Nb, W, Ta) to a PtNiN-based catalyst. After post-synthesis treatment, this novel catalyst showed significant improvement (2x) compared to the same catalysts without this treatment. This PtNiN-M catalyst uses a reduced amount of Pt and has an extended fuel cell device lifetime. Additionally, this material has outstanding activity and stability in membrane electrode assembly (MEA) based fuel cell tests.


其他

State Of Development

This novel material has been synthesized at large scales (1 gram/batch) and has been tested in MEA-based fuel cell tests. More conditions for post-synthesis treatment, elemental effects, and Pt concentration will be further explored to optimize its catalytic activity.


Background

Platinum-based alloy materials (e.g., Pt-Ni, Pt-Co) have a higher activity (up to 90x greater) than commercial Pt-C materials for use as catalysts in fuel cells. However, their use up to this point has been limited due to stability issues. Nanomaterial crystals have been shown to have superior performance over single crystals, making them a leading material candidate. However, Pt‐based nanostructures with both high catalytic activity and stability, which also have a reduced usage of scarce Pt, have remained a challenge.


Related Materials

X. Huang, E. Zhu, Y. Chen, Y. Li, C.-Y. Chiu, Y. Xu, Z. Lin, X. Duan, Y. Huang, A Facile Strategy to Pt3Ni Nanocrystals with Highly Porous Features as an Enhanced Oxygen Reduction Reaction Catalyst, Advanced Materials, 2013.


Additional Technologies by these Inventors


Tech ID/UC Case

29292/2017-514-0


Related Cases

2017-514-0


國家/地區

美國

欲了解更多信息,請點擊 這裡
Business of IP Asia Forum
桌面版