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Oxygen Reduction Activity and Stability of Composite Pdx/Co-Nanofilms/C Electrocatalysts in Acid and Alkaline Media

机译:Pdx / Co-Nanofilms / C复合电催化剂在酸性和碱性介质中的氧还原活性和稳定性

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摘要

The morphology tuning of Pd and Pd-M nanoparticles is one of the significant strategies to control the catalytic activity toward oxygen reduction reaction (ORR). In this study, composite Pdx/Co-nanofilms/C electrocatalysts of Pd nanoparticles implanted onto Co nanofilms were synthesized on an immiscible ionic liquid (IL)/water interface for ORR. The Pd nanoparticles implanted onto Co nanofilms show a marked distortion of crystal lattice and surface roughness. These Pdx/Co-nanofilms/C electrocatalysts exhibit enhanced activity for ORR compared with Pd/C and PdxCo/C catalysts in both acid and alkaline solutions, in which the Pd3/Co-nanofilms/C catalyst displays the highest ORR mass activity. The superior ORR mass activities of the fabricated Pdx/Co-nanofilms/C catalysts may be mainly attributed to their larger catalytic areas, which are conferred by the rough surface of Pd nanoparticles with a distorted crystal lattice, and the synergistic effect between the surface Pd atoms and the 2D Co nanofilm substrate. The relationship between ORR mass activity and Pd/Co atom ratio varies in different electrolytes. Furthermore, by using proper heat-treatment methods, the Pdx/Co-nanofilms/C catalysts exhibit improved cycling stability compared with pure Pd/C catalyst after extended potential cycling.
机译:Pd和Pd-M纳米粒子的形态调节是控制针对氧还原反应(ORR)的催化活性的重要策略之一。在这项研究中,在ORR的不互溶离子液体(IL)/水界面上合成了植入Co纳米膜上的Pd纳米颗粒的复合Pdx / Co纳米膜/ C电催化剂。植入Co纳米膜上的Pd纳米颗粒显示出明显的晶格畸变和表面粗糙度。与在酸性和碱性溶液中的Pd / C和PdxCo / C催化剂相比,这些Pdx / Co-纳米膜/ C电催化剂在ORR方面表现出增强的活性,其中Pd3 / Co-纳米膜/ C催化剂表现出最高的ORR质量活性。制备的Pdx / Co-纳米膜/ C催化剂具有优异的ORR质量活性,这可能主要是由于其较大的催化面积,这是由具有扭曲晶格的Pd纳米颗粒的粗糙表面以及表面Pd之间的协同效应所致。原子和2D Co纳米膜基质。 ORR质量活度与Pd / Co原子比之间的关系在不同的电解质中有所不同。此外,通过使用适当的热处理方法,经过延长的电势循环后,与纯Pd / C催化剂相比,Pdx / Co纳米膜/ C催化剂显示出改善的循环稳定性。

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