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Effective improvement of interface modified strontium titanate based solid oxide fuel cell anodes by infiltration with nano-sized palladium and gadolinium-doped cerium oxide

机译:用纳米钯和钆掺杂氧化铈渗透通过渗透有效改善钛酸钛酸锶基钛酸锶型固体氧化物燃料电池阳极

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摘要

The development of low temperature solid oxide fuel cell (SOFC) anodes by infiltration of Pd/Gd-doped cerium oxide (CGO) electrocatalysts in Nb-doped SrTiO3 (STN) backbones has been investigated. Modification of the electrode/electrolyte interface by thin layer of spin-coated CGO (400-500 nm) contributed to a significant improvement in performance of the STN backbones and infiltrated electrodes. The improvement is due to the result of CGO enrichment at the interface. The impedance analysis showed that addition of Pd further increased the electrode reaction rate with a factor 10 with respect to the CGO electrocatalysts. Very low electrode polarization resistances of 0.055 Ω cm2 (after excluding the gas diffusion limitation contribution) and 1.2 Ω cm2 at 600 C and 400 C, respectively, have been obtained in 3% H2/H2O. A gradual decrease in polarization resistance was achieved with increasing loading of Pd-CGO electrocatalyst. The microstructural analysis of the infiltrated Pd-CGO electrocatalyst on STN revealed a homogenous coating of Pd and CGO nanoparticles. © 2013 Elsevier Ltd. All rights reserved.
机译:研究了通过渗透到Nb掺杂的SrTiO3(STN)骨架中Pd / Gd掺杂氧化铈(CGO)电催化剂通过渗透进行低温固体氧化物燃料电池(SOFC)阳极的研制。通过薄层的旋涂的CGO(400-500nm)的电极/电解质界面的改变有助于STN主干和渗透电极的性能显着改善。改善是由于界面处的Cgγ富集的结果。阻抗分析表明,相对于CGO电催化剂的因子10进一步增加了PD的添加进一步提高了电极反应速率。在3%H 2 / H 2 O中,分别获得了0.055Ωcm2(排除气体扩散限制贡献之后的低电极偏振电阻和1.2Ωcm2,在3%H 2 / H 2 O中获得。随着Pd-Cgγ电催化剂的增加,实现了偏振抗性的逐渐降低。 STN渗透的PD-CGO电催化剂的微观结构分析显示Pd和CgO纳米粒子的均匀涂层。 ©2013 Elsevier Ltd.保留所有权利。

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