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首页> 外文期刊>Advanced Materials >A Cobalt-Free Multi-Phase Nanocomposite as Near-Ideal Cathode of Intermediate-Temperature Solid Oxide Fuel Cells Developed by Smart Self-Assembly
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A Cobalt-Free Multi-Phase Nanocomposite as Near-Ideal Cathode of Intermediate-Temperature Solid Oxide Fuel Cells Developed by Smart Self-Assembly

机译:智能自组装开发的无钴多相纳米复合材料,作为中温固体氧化物燃料电池的近乎理想的阴极。

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An ideal solid oxide fuel cell (SOFC) cathode should meet multiple requirements, i.e., high activity for oxygen reduction reaction (ORR), good conductivity, favorable stability, and sound thermo-mechanical/chemical compatibility with electrolyte, while it is very challenging to achieve all these requirements based on a single-phase material. Herein, a cost-effective multi-phase nanocomposite, facilely synthesized through smart self-assembly at high temperature, is developed as a near-ideal cathode of intermediate-temperature SOFCs, showing high ORR activity (an area-specific resistance of approximate to 0.028 omega cm(2) and a power output of 1208 mW cm(-2) at 650 degrees C), affordable conductivity (21.5 S cm(-1) at 650 degrees C), favorable stability (560 h operation in single cell), excellent chemical compatibility with Sm0.2Ce0.8O1.9 electrolyte, and reduced thermal expansion coefficient (approximate to 16.8 x 10(-6) K-1). Such a nanocomposite (Sr0.9Ce0.1Fe0.8Ni0.2O3-delta) is composed of a single perovskite main phase (77.2 wt%), a Ruddlesden-Popper (RP) second phase (13.3 wt%), and surface-decorated NiO (5.8 wt%) and CeO2 (3.7 wt%) minor phases. The RP phase promotes the oxygen bulk diffusion while NiO and CeO2 nanoparticles facilitate the oxygen surface process and O2- migration from the surface to the main phase, respectively. The strong interaction between four phases in nanodomain creates a synergistic effect, leading to the superior ORR activity.
机译:理想的固体氧化物燃料电池(SOFC)阴极应满足多种要求,即高的氧还原反应(ORR)活性,良好的电导率,良好的稳定性以及与电解质的良好的热机械/化学相容性,而这对挑战非常有挑战性。基于单相材料满足所有这些要求。本文中,开发了一种经济高效的多相纳米复合材料,该材料通过高温智能自组装轻松合成,作为中温SOFC的近乎理想的阴极,显示出高的ORR活性(面积比电阻约为0.028) Ωcm(2),在650摄氏度时的功率输出为1208 mW cm(-2),可承受的电导率(在650摄氏度时为21.5 S cm(-1)),良好的稳定性(单电池运行560小时),与Sm0.2Ce0.8O1.9电解质具有优异的化学相容性,并降低了热膨胀系数(约16.8 x 10(-6)K-1)。这种纳米复合材料(Sr0.9Ce0.1Fe0.8Ni0.2O3-delta)由单个钙钛矿主相(77.2 wt%),Ruddlesden-Popper(RP)第二相(13.3 wt%)和表面修饰的NiO组成(5.8 wt%)和CeO2(3.7 wt%)次要相。 RP相促进了氧的大量扩散,而NiO和CeO2纳米颗粒分别促进了氧的表面过程和O2从表面向主相的迁移。纳米域中四个相之间的强相互作用产生协同效应,从而导致卓越的ORR活性。

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