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Development of novel 3D metal silicide nanowires as electrocatalyst support for low cost and high durability PEM fuel cells

Development of novel 3D metal silicide nanowires as electrocatalyst support for low cost and high durability PEM fuel cells
开发新型 3D 金属硅化物纳米线作为低成本和高耐用性 PEM 燃料电池的电催化剂支持
批准号:
369127-2008
负责人:
Sun, Xueliang(Andy)
金额:
$5.05万
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2010
资助国家:
加拿大
项目状态:
已结题
起止时间:
2010-01-01 至 2011-12-31

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中文摘要
翻译
成本和耐久性是质子交换膜燃料电池(PEMFC)系统在经济上可行之前必须克服的两个主要障碍。目前的PEMFC技术仍然存在铂利用率低、传质能力有限和电极结构中基于炭黑的载体的电化学稳定性差的问题。因此,新型电极设计和开发低成本且稳定的催化剂载体以替代膜电极组件(MEA)内现有的碳载体,将为我们提供降低成本和性能差距以实现商业可行性的手段。该项目的目标是通过西安大略大学(UWO)和通用汽车加拿大有限公司(GM)的申请人之间的合作研究,应用一类具有特殊性能(高稳定性和导电性)的新型纳米材料,以解决燃料电池中高成本和低稳定性的重大挑战。拟议的研究项目与金属硅化物纳米线支撑,贵金属纳米颗粒及其复合材料的制造和表征有关,以获得用于汽车燃料电池的纳米材料的显着改善的性能和性能。一个重要的技术特征是合成和使用基于金属硅化物纳米线的特殊低维纳米材料(例如TiSi2、TaSi2和WSi2),其具有优异的热稳定性和耐腐蚀性以及极高的导电性,用于用作催化剂载体。这个创新的研究项目将充分利用申请人在清洁能源纳米技术方面的专业知识。预计开发的技术可以显着降低成本,提高燃料电池的稳定性,并可以转移到通用汽车的燃料电池产品。GM和UWO的孙博士将通过新纳米材料的创造性和创新性应用,共同应对这些挑战。拟议项目的成功完成将有利于加拿大工业,UWO和纳米技术社区,加速燃料电池商业化进程,直接减少环境污染。
英文摘要
Cost and durability are two major roadblocks that have to be overcome before proton exchange membrane fuel cell (PEMFC) system can become economically viable. Current PEMFC technology still suffers from low platinum utilization, limited mass transport capability, and poor electrochemical stability of the carbon black-based support in the electrode structure. Therefore, novel electrode design, and development of a low cost and stable catalyst support to replace existing carbon support within membrane electrode assembly (MEA), will provide us the means to reduce the cost and performance gaps towards commercial viability. The objectives of the project are to apply a class of novel nanomaterials with special properties (high stability and electrical conductivity) to address significant challenges of high cost and low stability in fuel cells through a collaborative research between the applicants at The University of Western Ontario (UWO) and General Motors Canada Ltd (GM). The proposed research project is associated with fabrication and characterization of metal silicide nanowire supports, noble metal nanoparticles and their composites to obtain significantly improved properties and performance of the nanomaterials used in fuel cells for automotive applications. An important technical feature is to synthesize and use special low-dimensional nanomaterials based on metal silicide nanowires (e.g. TiSi2, TaSi2 and WSi2) with excellent thermal stability and corrosion resistance as well as extremely high electrical conductivity for use as catalyst supports. This innovative research project will take full advantage of the applicants' expertise in nanotechnology for clean energy. It is expected that the developed techniques could significantly lower cost and improve stability of fuel cells and could be transferred to GM's fuel cell products. GM and Dr. Sun at UWO will collaboratively approach these challenges through the creative and innovative applications of new nanomaterials. The successful completion of the proposed project will be of benefit to Canadian industry, UWO, and to the nanotechnology community by accelerating the fuel cell commercialization process and directly reducing environmental pollution.
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