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亲水性铂纳米花:合成、晶体学分析及催化性能

Hydrophilic Pt nanoflowers: synthesis, crystallographic analysis and catalytic performance.

作者信息

Mourdikoudis Stefanos, Altantzis Thomas, Liz-Marzán Luis M, Bals Sara, Pastoriza-Santos Isabel, Pérez-Juste Jorge

机构信息

Departamento de Química Física , Universidade de Vigo , 36310 Vigo , Spain.

EMAT , University of Antwerp , Groenenborgerlaan 171 , B-2020 Antwerp , Belgium . Email:

出版信息

CrystEngComm. 2016 May 21;18(19):3422-3427. doi: 10.1039/c6ce00039h. Epub 2016 Apr 12.

Abstract

Water-soluble Pt nanoflowers (NFs) were prepared by diethylene glycol-mediated reduction of Pt acetylacetonate (Pt(acac)) in the presence of polyethylenimine. Advanced electron microscopy analysis showed that the NFs consist of multiple branches with a truncated cubic morphology and different crystallographic orientations. We demonstrate that the nature of the solvent strongly influences the resulting morphology. The catalytic performance of the Pt NFs in 4-nitrophenol reduction was found to be superior to that of other nanoparticle-based catalysts. Additionally, the Pt NFs display good catalytic reusability with no loss of activity after five consecutive cycles.

摘要

通过在聚乙烯亚胺存在下,用二甘醇介导乙酰丙酮铂(Pt(acac))的还原反应制备了水溶性铂纳米花(NFs)。先进的电子显微镜分析表明,这些纳米花由多个分支组成,具有截角立方形态和不同的晶体取向。我们证明了溶剂的性质对所得形态有强烈影响。发现铂纳米花在4-硝基苯酚还原反应中的催化性能优于其他基于纳米颗粒的催化剂。此外,铂纳米花表现出良好的催化可重复使用性,在连续五个循环后活性没有损失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6264/5361136/745ad861ce17/c6ce00039h-f1.jpg

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