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Nanoscale metal oxide and supported metal catalysts for Li-air battery.

机译:用于锂空气电池的纳米级金属氧化物和负载型金属催化剂。

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摘要

The dissertation work focuses on research and development of durable nanoscale catalysts and supports for rechargeable Li-air batteries that use aqueous catholytes. Transition metal oxides, TiO2 and Nb2 O5 in particular, were prepared from a sol-gel process in the form of nanocoatings (5∼50 nm) on carbon nanotubes (CNTs) and studied as catalyst supports. Carbon doping in the oxides and post annealing significantly increased their electronic conductivity. Pt catalyst on the support with TiO 2 (Pt/c-TiO2/CNTs) showed a much better oxygen reduction reaction (ORR) activity than a commercial Pt on carbon black (Pt/C). Negligible loss (< 3%) in ORR activity was found in Pt/c-TiO2/CNTs as compared to more than 50% loss in Pt/C, demonstrating a significantly improved durability in the developed catalysts. However, Pt/c-Nb2O5/CNTs was found to be worse in ORR activity and durability, suggesting that c-Nb 2O5/CNTs may not be a good support.;CNTs have fibrous shape and would provide a unique porous structure as electrode. Their buckypapers were made and used to support catalysts of Pt and IrO2 in the cathodes of Li-air batteries with sulfuric acid catholyte. At low Pt loading (5 wt.%) without IrO2 on the buckypaper cathode, the Li-air cell achieved a discharging capacity of 306 mAh/g and a specific energy of 1067 Wh/kg at 0.2 mA/cm2. A significant charge overpotential reduction (∼ 0.3 V) was achieved when IrO2 was also used to form a bifunctional catalyst with Pt on the buckypapers. The round trip efficiency was increased from 72% to 81% with the bifunctional cathode, demonstrating a higher energy conversion efficiency.
机译:论文的工作重点是耐用纳米级催化剂的研究和开发,以及使用水性阴极电解液的可充电锂空气电池的载体。过渡金属氧化物,尤其是TiO2和Nb2 O5,是通过溶胶-凝胶法以碳纳米管(CNT)上的纳米涂层(5至50 nm)的形式制备的,并作为催化剂载体进行了研究。氧化物中的碳掺杂和后退火大大提高了它们的电子电导率。 TiO 2(Pt / c-TiO2 / CNTs)载体上的Pt催化剂比炭黑上的商用Pt(Pt / C)表现出更好的氧还原反应(ORR)活性。与Pt / c损失超过50%相比,Pt / c-TiO2 / CNTs的ORR活性损失可忽略不计(<3%),这表明在开发的催化剂中耐久性得到了显着改善。然而,发现Pt / c-Nb2O5 / CNTs的ORR活性和耐久性较差,这表明c-Nb 2O5 / CNTs可能不是很好的载体。CNTs具有纤维状,可以提供独特的多孔结构作为电极。他们的布基纸被制成并用于用硫酸阴极电解液在锂空气电池的阴极中负载Pt和IrO2的催化剂。在布基纸阴极上没有IrO2的低Pt负载(5 wt。%)下,锂空气电池在0.2 mA / cm2的放电容量达到306 mAh / g,比能量为1067 Wh / kg。当IrO2也用于在Buckypapers上与Pt形成双官能催化剂时,可实现明显的电荷超电势降低(〜0.3 V)。双功能阴极的往返效率从72%增加到81%,表明具有更高的能量转换效率。

著录项

  • 作者

    Huang, Kan.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Chemical engineering.;Nanotechnology.;Energy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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