Hydrogen fuel cell vehicle system, has system main body provided with nanoparticles that are integrated into anode and cathode for improving electrochemical reactions for hydrogen oxidation and oxygen reduction
2024-12-13
专利权人UNIV SAVEETHA MEDICAL & TECH SCI SAVEETH (UYSA-Non-standard)
申请日期2024-12-13
专利号IN202441098684-A
成果简介NOVELTY - The system has a system main body provided with nanoparticles that are integrated into an anode and a cathode for improving electrochemical reactions for hydrogen oxidation and oxygen reduction. The nanoparticles are provided with a combination of precious metal catalysts for providing exceptional conductivity and catalytic efficiency. The nanoparticles are used for facilitating reduction in quantity of precious metals for a fuel cell due to increased catalytic efficiency of the incorporated nanoparticles. Integration of nanoparticles enhances durability and longevity of the fuel cell. USE - Hydrogen fuel cell vehicle (FCV) system. ADVANTAGE - The system ensures uniform distribution of nanoparticles, maximizes catalytic effects and improves durability of fuel cells for extended operational periods, so that enhancing performance, efficiency, and economic viability of hydrogen fuel cell vehicles can be enhanced, thus enhancing durability of the fuel cell system by improving resistance to degradation and extending operational lifespan, and hence addressing critical limitations of existing fuel cell technologies. DETAILED DESCRIPTION - An INDEPENDENT CLAIM is also included for method for fabricating fuel cell components. DESCRIPTION OF DRAWING(S) - The drawing shows a block diagram of the hydrogen fuel cell vehicle (FCV) system.
IPC 分类号B82Y-030/00 ; B82Y-040/00 ; H01M-004/86 ; H01M-004/92 ; H01M-008/1023
国家印度
专业领域能源矿产
语种英语
成果类型专利
文献类型科技成果
条目标识符http://119.78.100.226:8889/handle/3KE4DYBR/14095
专题中国科学院新疆生态与地理研究所
作者单位
UNIV SAVEETHA MEDICAL & TECH SCI SAVEETH (UYSA-Non-standard)
推荐引用方式
GB/T 7714
MOHAN R,SATHISH T,SARAVANAN R,et al. Hydrogen fuel cell vehicle system, has system main body provided with nanoparticles that are integrated into anode and cathode for improving electrochemical reactions for hydrogen oxidation and oxygen reduction. IN202441098684-A[P]. 2024.
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