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Rare earth Y doping induced lattice strain of mesoporous PtPd nanospheres for alkaline oxygen reduction electrocatalysis

机译:稀土Y掺杂诱导介孔PtPd纳米球晶格应变在碱氧还原电催化中的应用

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摘要

The synthesis of catalysts with controllable morphology and composition is important to enhance the catalytic performance for oxygen reduction reaction (ORR). Herein, trimetallic PtPdY mesoporous nanospheres (PtPdY MNs) are produced via a one-step chemical reduction method applying F127 as soft temple under acidic condition. The mesoporous structure provides a large contact area and also stimulates the diffusion and mass transfer of reactants and products. Besides, synergistic effect among Pt, Pd and Y elements effectively alters their electronic structure, enhancing the catalytic activity. Therefore, the PtPdY MNs show excellent ORR permanence to Pt/C under the alkaline solution. This study offers an effective channel for the preparation of mesoporous metals with rare earth metal doping towards promising electrocatalytic applications.
机译:合成形貌和组成可控的催化剂对于提高氧还原反应(ORR)的催化性能具有重要意义。本文通过一步化学还原法在酸性条件下以F127为软晶位,制备了三金属PtPdY介孔纳米球(PtPdY MNs)。介孔结构提供了较大的接触面积,也刺激了反应物和产物的扩散和传质。此外,Pt、Pd和Y元素之间的协同作用有效地改变了它们的电子结构,增强了催化活性。因此,在碱性溶液下,PtPdY MNs对Pt/C表现出优异的ORR持久性。该研究为利用稀土金属掺杂制备介孔金属提供了一条有效的途径,使其在电催化领域具有广阔的应用前景。

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