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Acid loaded porous silicon as a proton exchange membrane for micro-fuel cells

机译:酸负载多孔硅作为微燃料电池的质子交换膜

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摘要

Silicon-based fuel cells are under active development to supply chip-scale electrical power supply. In this paper, we demonstrate the use of sulfuric acid loaded nanoporous silicon as a proton electrolytic membrane (PEM) material for micro-fuel cell applications. Sulfuric acid loaded nanoporous silicon membranes with thickness of 40-70 pun have proton conductivities (0.0068-0.33 S/cm) comparable to, and in some cases better than, Nafion? (0.05 S/cm), which is the most commonly used commercial PEM material. Additionally, the permeability of formic acid at room temperature through nanoporous silicon membranes was found to be similar to that of Nafion~R membranes, which increases with increasing anodization current density (4.3 X 10~(-8) to 3.9 X 10~(-7) mol/(scm~2) for nanoporous silicon as compared to 1.23 X 10~(-7) mol/(s cm~2) for Nafion~R 117). These results represent the discovery of a new class of protonic conductor that can be integrated into standard silicon microfabrication processes.
机译:硅基燃料电池正在积极开发,以提供芯片级的电源。在本文中,我们演示了使用硫酸负载的纳米多孔硅作为质子电解质膜(PEM)材料的微燃料电池应用。厚度为40-70 pun的硫酸负载的纳米多孔硅膜的质子电导率(0.0068-0.33 S / cm)与Nafion?相当,在某些情况下更好。 (0.05 S / cm),这是最常用的商用PEM材料。此外,发现甲酸在室温下通过纳米多孔硅膜的渗透性与Nafion〜R膜相似,随着阳极氧化电流密度的增加而增加(从4.3 X 10〜(-8)到3.9 X 10〜(- 7)对于纳米多孔硅为mol /(scm〜2),而对于Nafion〜R 117为1.23 X 10〜(-7)mol /(s cm〜2)。这些结果代表了可以集成到标准硅微加工过程中的新型质子导体的发现。

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