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Size-Controlled Synthesis of Sub-10 nm PtNi3 Alloy Nanoparticles and their Unusual Volcano-Shaped Size Effect on ORR Electrocatalysis

机译:亚10 nm PtNi3合金纳米粒子的尺寸控制合成及其对ORR电催化的异常火山形尺寸效应

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摘要

Dealloyed Pt bimetallic core-shell catalysts derived from low-Pt bimetallic alloy nanoparticles (e.g, PtNi3) have recently shown unprecedented activity and stability on the cathodic oxygen reduction reaction (ORR) under realistic fuel cell conditions and become today's catalyst of choice for commercialization of automobile fuel cells. A critical step toward this breakthrough is to control their particle size below a critical value (approximate to 10 nm) to suppress nanoporosity formation and hence reduce signifi cant base metal (e.g., Ni) leaching under the corrosive ORR condition. Fine size control of the sub-10 nm PtNi3 nanoparticles and understanding their size dependent ORR electrocatalysis are crucial to further improve their ORR activity and stability yet still remain unexplored. A robust synthetic approach is presented here for size-controlled PtNi3 nanoparticles between 3 and 10 nm while keeping a constant particle composition and their size-selected growth mechanism is studied comprehensively. This enables us to address their size-dependent ORR activities and stabilities for the first time. Contrary to the previously established monotonic increase of ORR specific activity and stability with increasing particle size on Pt and Pt-rich bimetallic nanoparticles, the Pt-poor PtNi3 nanoparticles exhibit an unusual "volcano-shaped" size dependence, showing the highest ORR activity and stability at the particle sizes between 6 and 8 nm due to their highest Ni retention during long-term catalyst aging. The results of this study provide important practical guidelines for the size selection of the low Pt bimetallic ORR electrocatalysts with further improved durably high activity.
机译:由低铂双金属合金纳米粒子(例如PtNi3)衍生的脱合金铂双金属核-壳催化剂最近在现实的燃料电池条件下对阴极氧还原反应(ORR)表现出空前的活性和稳定性,并成为当今商业化选择的催化剂汽车燃料电池。实现这一突破的关键步骤是将其粒径控制在临界值(约10 nm)以下,以抑制纳米孔隙的形成,从而减少腐蚀性ORR条件下显着的贱金属(例如Ni)的浸出。精确控制亚10纳米以下PtNi3纳米粒子的大小并了解其尺寸依赖性ORR电催化作用对于进一步提高其ORR活性和稳定性至关重要,但仍需探索。本文提出了一种稳健的合成方法,用于在3至10 nm之间控制尺寸的PtNi3纳米颗粒,同时保持恒定的颗粒组成,并对其尺寸选择的生长机理进行了全面研究。这使我们能够首次解决它们依赖于大小的ORR活动和稳定性。与先前确定的在Pt和富Pt的双金属纳米颗粒上随粒径增加而导致的ORR比活性和稳定性的单调增加相反,贫Pt的PtNi3纳米颗粒表现出不同寻常的“火山状”尺寸依赖性,显示出最高的ORR活性和稳定性由于它们在长期催化剂老化过程中具有最高的镍保留率,因此其粒径在6至8 nm之间。这项研究的结果为选择具有进一步改善的持久高活性的低铂双金属ORR电催化剂提供了重要的实用指南。

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