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{111} 配位的 Pt3Cu 纳米晶体的结晶控制:具有增强电催化性能的多孪晶 Pt3Cu 二十面体。

Crystalline Control of {111} Bounded Pt3Cu Nanocrystals: Multiply-Twinned Pt3Cu Icosahedra with Enhanced Electrocatalytic Properties.

机构信息

†College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Jiangsu 215123, China.

‡Physical Chemistry and Applied Spectroscopy, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, United States.

出版信息

ACS Nano. 2015 Jul 28;9(7):7634-40. doi: 10.1021/acsnano.5b02986. Epub 2015 Jul 14.

Abstract

Despite that different facets have distinct catalytic behavior, the important role of twin defects on enhancing the catalytic performance of metallic nanocrystals is largely unrevealed. The key challenge in demonstrating the importance of twin defects for catalysis is the extreme difficulties in creating nanostructures with the same exposed facets but tunable twin defects that are suitable for catalytic investigations. Herein, we show an efficient synthetic strategy to selectively synthesize {111}-terminated Pt3Cu nanocrystals with controllable crystalline features. Two distinct {111}-bounded shapes, namely, multiply-twinned Pt3Cu icosahedra and single-crystalline Pt3Cu octahedra, are successfully prepared by simply changing the types of Cu precursors with the other growth parameters unchanged. Electrocatalytic studies show that the {111}-terminated Pt3Cu nanocrystals exhibit the very interesting crystalline nature-dependent electrocatalytic activities toward both the oxygen reduction reaction (ORR) and methanol oxidation reaction (MOR) with multiply-twinned Pt3Cu icosahedra demonstrating enhanced electrocatalytic activities compared to the single-crystalline Pt3Cu octahedra due to their additional yet important effect of twin defect. As a result, under the multiple tuning conditions (alloy, shape, and twin effects), the multiply-twinned Pt3Cu icosahedra exhibit much enhanced electrocatalytic activities in both ORR and MOR with respect to the Pt black. The present work highlights the importance of twin defects in enhancing electrocatalytic activities of metallic nanocrystals.

摘要

尽管不同晶面具有独特的催化行为,但孪晶缺陷在提高金属纳米晶体催化性能方面的重要作用在很大程度上尚未被揭示。证明孪晶缺陷在催化中重要性的关键挑战是,在创建具有相同暴露晶面但可调孪晶缺陷的纳米结构方面存在极端困难,而这些缺陷适合催化研究。在此,我们展示了一种高效的合成策略,可选择性地合成具有可控晶体特征的{111}终止的 Pt3Cu 纳米晶体。通过简单地改变 Cu 前体的类型而不改变其他生长参数,可以成功制备两种不同的{111}边界形状,即多孪晶 Pt3Cu 二十面体和单晶 Pt3Cu 八面体。电催化研究表明,{111}终止的 Pt3Cu 纳米晶体表现出有趣的晶面依赖性电催化活性,对氧还原反应(ORR)和甲醇氧化反应(MOR)均具有增强的电催化活性,与单晶 Pt3Cu 八面体相比,多孪晶 Pt3Cu 二十面体由于其额外的、重要的孪晶缺陷效应而表现出增强的电催化活性。因此,在多种调节条件(合金、形状和孪晶效应)下,多孪晶 Pt3Cu 二十面体在 ORR 和 MOR 中相对于 Pt 黑表现出增强的电催化活性。本工作强调了孪晶缺陷在提高金属纳米晶体电催化活性方面的重要性。

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