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研究晶格应变对小尺寸Au@PdPt核壳纳米颗粒合金化表面的影响。

Investigating lattice strain impact on the alloyed surface of small Au@PdPt core-shell nanoparticles.

作者信息

Williams Benjamin P, Yaguchi Momo, Lo Wei-Shang, Kao Chen-Rui, Lamontagne Leo K, Sneed Brian T, Brodsky Casey N, Chou Lien-Yang, Kuo Chun-Hong, Tsung Chia-Kuang

机构信息

Department of Chemistry, Merkert Chemistry Center, Boston College, 2609 Beacon Street, Chestnut Hill, Massachusetts 02467, USA.

出版信息

Nanoscale. 2020 Apr 30;12(16):8687-8692. doi: 10.1039/d0nr01021a.

Abstract

We investigated lattice strain on alloyed surfaces using ∼10 nm core-shell nanoparticles with controlled size, shape, and composition. We developed a wet-chemistry method for synthesizing small octahedral PdPt alloy nanoparticles and Au@PdPt core-shell nanoparticles with Pd-Pt alloy shells and Au cores. Upon introduction of the Au core, the size and shape of the overall nanostructure and the composition of the alloyed PdPt were maintained, enabling the use of the electrooxidation of formic acid as a probe to compare the surface structures with different lattice strain. We have found that the structure of the alloyed surface is indeed impacted by the lattice strain generated by the Au core. To further reveal the impact of lattice strain, we fine-tuned the shell thickness. Then, we used synchrotron-based X-ray diffraction to investigate the degree of lattice strain and compared the observations with the results of the formic acid electrooxidation, suggesting that there is an optimal intermediate shell thickness for high catalytic activity.

摘要

我们使用尺寸、形状和组成可控的约10纳米核壳纳米颗粒研究了合金表面的晶格应变。我们开发了一种湿化学方法,用于合成具有钯 - 铂合金壳层和金核的小八面体钯铂合金纳米颗粒以及金@钯铂核壳纳米颗粒。引入金核后,整体纳米结构的尺寸和形状以及合金化钯铂的组成得以保持,这使得能够使用甲酸的电氧化作为探针来比较具有不同晶格应变的表面结构。我们发现合金表面的结构确实受到金核产生的晶格应变的影响。为了进一步揭示晶格应变的影响,我们对壳层厚度进行了微调。然后,我们使用基于同步加速器的X射线衍射来研究晶格应变程度,并将观察结果与甲酸电氧化的结果进行比较,结果表明存在一个具有高催化活性的最佳中间壳层厚度。

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