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Development and tailoring nanoelectrodes for micropower fuel cells

Development and tailoring nanoelectrodes for micropower fuel cells
微功率燃料电池纳米电极的开发和定制
批准号:
311689-2006
负责人:
Mohamedi, Mohamed
金额:
$1.76万
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2006
资助国家:
加拿大
项目状态:
已结题
起止时间:
2006-01-01 至 2007-12-31

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中文摘要
翻译
微型燃料电池(micro fuel cells,m-FC)是用于治疗人类疾病的体外和植入式医疗设备、传感器、无线MEMS等的必需品。具有更好的电催化剂利用率的上级m-FC电极是一个非常重要的研究课题。纳米结构将导致更好地利用贵金属,从而降低电极成本。该研究计划的长期目标是:i)开发和ii)为下一代m-FC定制催化剂/CNT/基底纳米结构电极。这两个里程碑是:(1)在预图案化的微通道燃料电池电极上合成垂直良好排列的单壁碳纳米管(SWNT)和多壁碳纳米管(MWNT)的受控合成,和(2)纳米催化剂在预图案化的微通道上的受控电化学沉积。该提案侧重于里程碑(1)和(2)中合成的材料在与液体微燃料电池相关的燃料和氧化剂进行电化学相互作用时的基本结构/性能-性能关系。进一步的重点将是在纳米级工作所带来的挑战,如物理,化学,机械和电化学性能在该水平上的变化方式。进一步的重点将是研究当固体、液体和气体被限制在像微通道这样更小的区域时发生的变化。这项研究提案中的发现将为技术电极的整个结构控制m-FC性能的方式提供急需的见解。这将有助于改善加拿大的这些技术,从而提高加拿大人的生活质量。
英文摘要
Micro fuel cells (m-FCs) are required for external and implantable medical devices for the treatment of human illness, sensors, wireless MEMS, etc. Superior m-FC electrodes with better utilization of electrocatalyst, is a research topic of utmost importance. Nanostructures will lead to better utilization of noble metal and hence low electrode cost. The long-term objectives of this research programme are: i) to develop and ii) tailor catalysts/CNTs/substrate nanostructured electrodes for next generation m-FCs. The two milestones are: (1) controlled synthesis of synthesis of vertically well-aligned single wall carbon-nanotubes (SWNTs) and Multi walls carbon nanotubes (MWNTS) on prepatterned microchannel fuel cell electrodes, and (2) controlled electrochemical deposition of nanocatalysts on prepatterned microchannel. The proposal focuses on the fundamental structure/property-performance relationships of materials synthesized in milestones (1) and (2) when submitted to electrochemical interactions with fuels and oxidant of relevance to liquid-based microfuel cells. Further focus will be on the challenges stemming from working at nanoscale such as the way physical, chemical, mechanical, and electrochemical properties change at that level. Further focal point will be on studying changes occurring when solids, liquids, and gases are confined to regions smaller as microchannels. Discoveries that will emerge from this research proposal will provide much needed insight into the way in which the whole structure of technical electrodes controls the performance of m-FCs. This will help improve these technologies in Canada and by that the quality of life of Canadians.
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Stoichiometry, hierarchical arrangement and kinetics of electrode reactions at novel multi-components electrocatalytic materials
Stoichiometry, hierarchical arrangement and kinetics of electrode reactions at novel multi-components electrocatalytic materials
Stoichiometry, hierarchical arrangement and kinetics of electrode reactions at novel multi-components electrocatalytic materials
Stoichiometry, hierarchical arrangement and kinetics of electrode reactions at novel multi-components electrocatalytic materials
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