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首页> 外文期刊>Frontiers in Chemistry >Tuning the Catalytic Activity of Ir@Pt Nanoparticles Through Controlling Ir Core Size on Cathode Performance for PEM Fuel Cell Application
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Tuning the Catalytic Activity of Ir@Pt Nanoparticles Through Controlling Ir Core Size on Cathode Performance for PEM Fuel Cell Application

机译:通过控制Ir核尺寸对PEM燃料电池应用中阴极性能的调节Ir @ Pt纳米粒子的催化活性

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Pulse electrochemically synthesis of a series of core-shell structured Ir@Pt/C catalysts in cathode catalysts layer are achieved to fabricate membrane electrode assemblies (MEA) with cathode ultra-low Pt loading. The single cell performance of the MEAs in a H2/air PEMFC greatly rely on the sizes of the Ir core nanoparticle, and the optimum activity occurs with Ir core size of 4.1 nm. The cathode MEA with core-shell structured catalysts with optimal Ir core size exhibited excellent performance in a H2/air single fuel cell, comparable to that of a commercial Pt/C MEA (Johnson Matthey 40% Pt), even though the Pt loading in Ir@Pt was only 40% that of the commercial Pt cathode (0.04 vs. 0.1 mg cm–2). The catalysts were characterized by X-ray diffraction, X-ray photoelectron spectroscopy (XPS) and scanning transmission electron microscopy. Based on the characterization results, especially from XPS, we suggest that the effect of Ir core particle size on MEA performance may arise from the interactions between the Pt shell and the Ir core. The XPS results showed that the Ir@Pt/C-300 catalyst has the highest Pt0 fraction among the four tested samples. This work demonstrates the alternative to enhance the cathode performance in single cell of Pt-based core-shell structured catalysts by varying size of the core metal under the Pt shell.
机译:实现了阴极催化剂层中一系列核壳结构的Ir @ Pt / C催化剂的脉冲电化学合成,以制造具有超低Pt阴极负载的膜电极组件(MEA)。 H2 /空气PEMFC中MEA的单电池性能很大程度上取决于Ir核纳米颗粒的大小,Ir核大小为4.1 nm时会出现最佳活性。具有最佳Ir核尺寸的核-壳结构催化剂的阴极MEA在H2 /空气单燃料电池中表现出与商用Pt / C MEA(Johnson Matthey 40%Pt)相当的优异性能,即使在Ir @ Pt仅为商用Pt阴极的40%(0.04对0.1 mg cm–2)。通过X射线衍射,X射线光电子能谱(XPS)和扫描透射电子显微镜对催化剂进行表征。根据表征结果,尤其是XPS的表征结果,我们建议Ir核颗粒尺寸对MEA性能的影响可能来自Pt壳层与Ir核之间的相互作用。 XPS结果表明,在四个测试样品中,Ir @ Pt / C-300催化剂具有最高的Pt0分数。这项工作证明了通过改变Pt壳下核金属的尺寸来增强Pt基核壳结构催化剂在单电池中的阴极性能的替代方法。

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