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高密度表面突起赋予三元 PtFeSn 纳米线高效醇电氧化的高催化性能。

High-density surface protuberances endow ternary PtFeSn nanowires with high catalytic performance for efficient alcohol electro-oxidation.

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, PR China.

出版信息

Nanoscale. 2019 Oct 10;11(39):18176-18182. doi: 10.1039/c9nr06343a.

DOI:10.1039/c9nr06343a
PMID:31556904
Abstract

Developing cost-effective catalysts with superb activity and stability to alcohol electro-oxidation is a decisive factor towards the progress of direct alcohol fuel cells (DAFCs). Rationally utilizing the architectural and surface microstructural sensitivity of nanocatalysts can significantly increase their electrocatalytic properties. Here, we report an appropriate route that allows the fabrication of ultrafine PtFeSn nanowires (NWs) with tunable compositions. Interestingly, the addition of Sn reconstructed the surface microstructures, making ultrafine 1D NWs rich in a large number of surface protuberances, which may facilitate the oxidation of ethanol and methanol. Impressively, further catalytic studies demonstrate that all the PtFeSn NWs exhibit excellent catalytic capabilities for ethanol oxidation reaction (EOR) and methanol oxidation reaction (MOR), and display composition-related electrocatalytic activity with Pt1Fe0.20Sn0.46 NWs, possessing the highest activity for EOR and MOR. In addition, the trimetallic PtFeSn NWs exhibit significant meliorative durability relative to PtFe NWs and commercial Pt/C. The superb electrocatalytic performance is ascribed to its one-dimensional (1D) structure, atomic-level fine diameter, synergistic effect among Pt, Fe, and Sn components and abundant protuberances on the surface. Thus, this study highlights the significance of accurate structure- and surface-controlled Pt-based NWs for electrocatalysis and provides a universal approach for designing multi-component catalysts.

摘要

开发具有高活性和高稳定性的经济高效催化剂对于直接醇燃料电池(DAFC)的发展至关重要。合理利用纳米催化剂的结构和表面微观结构敏感性可以显著提高其电催化性能。在这里,我们报告了一种合适的方法,可以制造具有可调组成的超细 PtFeSn 纳米线(NWs)。有趣的是,Sn 的添加重构了表面微观结构,使超细一维 NWs 富含大量表面突起,这可能有利于乙醇和甲醇的氧化。令人印象深刻的是,进一步的催化研究表明,所有 PtFeSn NWs 都表现出优异的乙醇氧化反应(EOR)和甲醇氧化反应(MOR)催化能力,并且表现出与组成相关的电催化活性,其中 Pt1Fe0.20Sn0.46 NWs 具有最高的 EOR 和 MOR 活性。此外,与 PtFe NWs 和商业 Pt/C 相比,三元 PtFeSn NWs 表现出显著的耐久性改善。卓越的电催化性能归因于其一维(1D)结构、原子级细直径、Pt、Fe 和 Sn 成分之间的协同效应以及表面上丰富的突起。因此,本研究强调了准确控制结构和表面的基于 Pt 的 NWs 在电催化中的重要性,并为设计多组分催化剂提供了一种通用方法。

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