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Advanced one-dimensional nanostructures for high performance catalyst electrodes in polymer electrolyte fuel cellsud

机译:用于高分子电解质燃料电池中高性能催化剂电极的先进的一维纳米结构 ud

摘要

In the past decades, the study of nanotechnology has brought in tremendous progress to the development of polymer electrolyte fuel cells (PEFC) and many advanced catalyst approaches have been developed. However, many of these still remain at ‘test-tube’ level and have not been implemented in practical fuel cells. The concerns about the gap between the pure material research and fuel cells are increasing, and a study focusing on the electrode structures is required to help address this issue.ududIn this thesis, the in-situ growing process of one-dimensional (1D) Pt-based nanostructures on gas diffusion layers (GDLs) was systematically studied to help understand the structure-property relationship of the gas diffusion electrodes (GDEs). The crystal nucleation and growth, coupled with the distribution of the produced nanostructures were investigated based on the corresponding GDE performance in PEFCs. The influence of the in-situ growing temperature, the hybridizing Pd metal and the structures of the GDL itself were comprehensively investigated for a further understanding of the in-situ nanowire growing process. ududThis work demonstrates that besides the intrinsic catalytic activities of the catalysts themselves, their optimal implementation in electrodes, i.e. the electrode structure, play an important role in the power performance of PEFCs than we initially expected.
机译:在过去的几十年中,纳米技术的研究为聚合物电解质燃料电池(PEFC)的开发带来了巨大的进步,并且已经开发了许多先进的催化剂方法。但是,其中许多仍处于“试管”水平,尚未在实际的燃料电池中实现。对纯材料研究与燃料电池之间的差距的关注与日俱增,因此需要针对电极结构进行研究以帮助解决这一问题。 ud ud在本文中,一维原位生长过程( 1D)对气体扩散层(GDL)上的Pt基纳米结构进行了系统研究,以帮助理解气体扩散电极(GDE)的结构-特性关系。基于PEFC中相应的GDE性能,研究了晶体的成核和生长,以及所产生的纳米结构的分布。为了进一步了解原位纳米线的生长过程,对原位生长温度,Pd杂化金属和GDL本身结构的影响进行了全面研究。 ud ud这项工作表明,除了催化剂本身的固有催化活性外,它们在电极中的最佳实施方式(即电极结构)在PEFC的动力性能中也比我们最初预期的重要。

著录项

  • 作者

    Lu Yaxiang;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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