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原位粗化研究:反胶束法制备的负载于 γ-Al2O3 上的 Pt 纳米粒子:预处理和环境效应。

In situ coarsening study of inverse micelle-prepared Pt nanoparticles supported on γ-Al2O3: pretreatment and environmental effects.

机构信息

Department of Physics, University of Central Florida, Orlando, Florida 32816, USA.

出版信息

Phys Chem Chem Phys. 2012 Aug 28;14(32):11457-67. doi: 10.1039/c2cp41339f. Epub 2012 Jul 17.

Abstract

The thermal stability of inverse micelle prepared Pt nanoparticles (NPs) supported on nanocrystalline γ-Al(2)O(3) was monitored in situ under different chemical environments (H(2), O(2), H(2)O) via extended X-ray absorption fine-structure spectroscopy (EXAFS) and ex situ via scanning transmission electron microscopy (STEM). Drastic differences in the stability of identically synthesized NP samples were observed upon exposure to two different pre-treatments. In particular, exposure to O(2) at 400 °C before high temperature annealing in H(2) (800 °C) was found to result in the stabilization of the inverse micelle prepared Pt NPs, reaching a maximum overall size after moderate coarsening of ∼1 nm. Interestingly, when an analogous sample was pre-treated in H(2) at ∼400 °C, a final size of ∼5 nm was reached at 800 °C. The beneficial role of oxygen in the stabilization of small Pt NPs was also observed in situ during annealing treatments in O(2) at 450 °C for several hours. In particular, while NPs of 0.5 ± 0.1 nm initial average size did not display any significant sintering (0.6 ± 0.2 nm final size), an analogous thermal treatment in hydrogen leads to NP coarsening (1.2 ± 0.3 nm). The same sample pre-dosed and annealed in an atmosphere containing water only displayed moderate sintering (0.8 ± 0.3 nm). Our data suggest that PtO(x) species, possibly modifying the NP/support interface, play a role in the stabilization of small Pt NPs. Our study reveals the enhanced thermal stability of inverse micelle prepared Pt NPs and the importance of the sample pre-treatment and annealing environment in the minimization of undesired sintering processes affecting the catalytic performance of nanosized particles.

摘要

通过扩展 X 射线吸收精细结构光谱(EXAFS)和原位扫描透射电子显微镜(STEM),在不同化学环境(H 2 、O 2 、H 2 O)下原位监测了负载在纳米晶γ-Al 2 O 3 上的反胶束制备的 Pt 纳米颗粒(NPs)的热稳定性。在暴露于两种不同的预处理后,观察到相同合成的 NP 样品的稳定性有很大差异。特别是,在高温退火(800°C)前在 O 2 中于 400°C 下进行预处理被发现导致反胶束制备的 Pt NPs 稳定化,在适度的 1nm 粗化后达到最大的整体尺寸。有趣的是,当类似的样品在约 400°C 的 H 2 中进行预处理时,在 800°C 时达到约 5nm 的最终尺寸。在 450°C 的 O 2 中进行退火处理数小时时,也观察到氧在稳定小 Pt NPs 中的有益作用。特别是,虽然初始平均尺寸为 0.5±0.1nm 的 NPs 没有显示出任何明显的烧结(最终尺寸为 0.6±0.2nm),但在氢气中的类似热处理导致 NPs 粗化(1.2±0.3nm)。在仅含有水的气氛中预加载和退火的相同样品仅显示出适度的烧结(0.8±0.3nm)。我们的数据表明,PtO(x) 物种可能修饰 NP/载体界面,在稳定小 Pt NPs 中起作用。我们的研究揭示了反胶束制备的 Pt NPs 的增强热稳定性,以及样品预处理和退火环境在最小化影响纳米颗粒催化性能的不期望烧结过程中的重要性。

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