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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >Electrospray-assisted fabrication of porous platinum-carbon composite thin layers for enhancing the electrochemical performance of proton-exchange membrane fuel cells
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Electrospray-assisted fabrication of porous platinum-carbon composite thin layers for enhancing the electrochemical performance of proton-exchange membrane fuel cells

机译:电喷雾辅助制备多孔铂 - 碳复合层,用于增强质子交换膜燃料电池的电化学性能

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摘要

Membrane electrode assembly (MEA) in proton-exchange membrane fuel cells (PEMFCs) have been fabricated using electrospray-assisted deposition of platinum-carbon composites on carbon-fiber-based paper substrate, because the technique is versatile, operated in atmospheric pressure, and easy to scale up for commercialization. In this study, we investigate the effects of electrospray-assisted platinum loadings from 0.1 to 0.5?mg?cm?2on the electrochemical performance of PEMFCs. The PEMFCs with platinum loading of 0.3?mg?cm?2generate the highest power density, which is ~35% higher than that of PEMFCs fabricated by traditional brush-deposited catalyst layers. Relatively high platinum loading (>0.3?mg?cm?2) enhances the pressure drop in MEA; therefore, the resulting power density is decreased due to low-reacting gas permeability. We also examine the effect of porous structures on the electrochemical performance of PEMFCs. Brij 58-based surfactant templates create micro- and nano-porous structures in the platinum-carbon composite thin layers via thermal removal. These porous structures in the platinum-carbon composite thin layers increase the reacting gas permeability and simultaneously lower the cell resistance, significantly enhancing the electrochemical performance of PEMFCs with porous structures.
机译:使用电喷雾辅助沉积在碳纤维类纸基材上的电喷雾辅助沉积的质子交换膜燃料电池(PEMFC)中的膜电极组件(PEMFC),因为该技术是多功能的,在大气压下操作,轻松扩大商业化。在这项研究中,我们研究了电喷雾辅助铂载荷的影响0.1至0.5Ωmg≤Cm2 .2ONPEMFC的电化学性能。 PEMFC具有铂载荷为0.3Ω·mg≤CMα2,功率密度最高,其比传统刷涂催化剂层制造的PEMFC高约35%。相对较高的铂载荷(>0.3Ω·mg?cm 2)增强了MEA的压降;因此,由于低反应的气体渗透性,所得到的功率密度降低。我们还研究多孔结构对PEMFC电化学性能的影响。 Brij 58的表面活性剂模板通过热除去在铂 - 碳复合薄层中产生微型和纳米多孔结构。铂 - 碳复合层中的这些多孔结构增加了反应的透气性并同时降低了电池抗性,显着提高了具有多孔结构的PEMFC的电化学性能。

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