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首页> 外文期刊>ACS catalysis >Investigating Particle Size Effects in Catalysis by Applying a Size-Controlled and Surfactant-Free Synthesis of Colloidal Nanoparticles in Alkaline Ethylene Glycol: Case Study of the Oxygen Reduction Reaction on Pt
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Investigating Particle Size Effects in Catalysis by Applying a Size-Controlled and Surfactant-Free Synthesis of Colloidal Nanoparticles in Alkaline Ethylene Glycol: Case Study of the Oxygen Reduction Reaction on Pt

机译:通过在碱性乙二醇中施加尺寸控制和无表面活性剂的合成来研究催化作用的粒度效应:含氧氧还原对PT的氧气还原反应的情况

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摘要

Colloidal platinum nanoparticles are obtained via a surfactant-free polyol process in alkaline ethylene glycol. In this popular synthesis, ethylene glycol functions as solvent and reducing agent. The preparation procedure is known for its reproducibility to obtain 1-2 nm nanoparticles, but at the same time the controlled preparation of larger nanoparticles is challenging. A reliable size control without the use of surfactants is a fundamental yet missing achievement for systematic investigations. In this work it is demonstrated how the molar ratio between NaOH and the platinum precursor determines the final particle size and how this knowledge can be used to prepare and study in a systematic way supported catalysts with defined size and Pt to carbon ratio. Using small-angle X-ray scattering, transmission electron microscopy, infrared spectroscopy, X-ray absorption spectroscopy, pair distribution function, and electrochemical analysis it is shown that when the NaOH/Pt molar ratio is changed from 25 to 3 the Pt nanoparticle size is tuned from 1 to 5 nm. This size range is of interest for various catalytic applications, such as the oxygen reduction reaction (ORR). Supporting the nanoparticles onto a high-surface-area carbon, we demonstrate how the particle size effect can be studied while the Pt to carbon ratio is kept constant, an important aspect that in previous studies could not be accomplished.
机译:通过碱性乙二醇中的无表面活性剂多元醇工艺获得胶体铂纳米颗粒。在该流行的合成中,乙二醇用作溶剂和还原剂。已知制备程序以其重现性以获得1-2nm纳米颗粒,但同时较大纳米颗粒的受控制剂具有挑战性。不使用表面活性剂的可靠尺寸控制是系统调查的基本又缺失的成就。在这项工作中,证明了NaOH和铂前体之间的摩尔比确定了最终的粒度和如何用于在具有定义尺寸和Pt的催化剂的系统方式中制备和研究。使用小角X射线散射,透射电子显微镜,红外光谱,X射线吸收光谱,对分布函数和电化学分析,表明当NaOH / Pt摩尔比从25-3变为Pt纳米粒子尺寸时从1到5 nm调谐。这种尺寸范围对于各种催化应用,例如氧还原反应(ORR)感兴趣。将纳米颗粒与高表面积碳一起进行,我们证明了如何研究粒度效应,而Pt到碳比保持恒定,这是在以前的研究中不能完成的重要方面。

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