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Facile synthesis of Pd3Y alloy nanoparticles for electrocatalysis of the oxygen reduction reaction

机译:Pd3Y合金纳米粒子的容易合成用于氧还原反应的电常分

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Multielement nanocrystals made of noble metals and transition metals are at the focus of theoretical and experimental studies for their promising performances in several key electrochemical processes of the renewable energies landscape. However, the preparation of bimetallic nanocrystals often requires expensive and tedious procedures, sometimes resulting in nanocrystals contaminated at their surface by synthesis byproducts. In this paper we describe the synthesis of Pd3Y alloy nanoparticles (NPs) by a robust laser assisted method in pure organic solvents and their performances as electrocatalysts for oxygen reduction reaction (ORR). The electrochemical properties of Pd3Y NPs for ORR, investigated in acid and alkaline electrolytes, exhibited higher activity than standard Pd/C or Pt/C systems, in terms of half wave potential, mass activity and specific activity, in agreement with the predictions of the Norskov d-band center model for Pd alloys. The effect of ClO4- and Cl- anions was also investigated revealing a surprising poisoning effect of both anions for the Pd3Y alloys. Overall, laser generated Pd3Y alloy NPs emerged as highly active nanosystems for ORR, opening the way to the realization of other nanoalloys of potential interest in the perspective of Pt replacement by the same synthetic route. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由贵金属和过渡金属制成的多元纳米晶体是理论和实验研究的重点,在可再生能源景观的几个关键电化学过程中的有前途表演的焦点。然而,双金属纳米晶体的制备通常需要昂贵和繁琐的方法,有时通过合成副产物在其表面污染纳米晶体。本文通过纯有机溶剂中的鲁棒激光辅助方法及其表演来描述Pd3Y合金纳米颗粒(NPS)的合成,作为用于氧还原反应的电催化剂(ORR)。在酸和碱性电解质中研究的PD3Y NPS的电化学特性,在一半的波动势,大规模活动和特定活动方面表现出比标准PD / C或PT / C系统更高的活性。 Norskov D频带中心模型为PD合金。还研究了ClO4和Cl-阴离子的效果,揭示了两个阴离子对PD3Y合金的令人惊讶的中毒作用。总的来说,激光产生的PD3Y合金NPS作为ORR的高活性纳米系统出现,以相同的合成途径的PT置换的角度开辟了实现潜在兴趣的其他纳米合金的方式。 (c)2019 Elsevier Ltd.保留所有权利。

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