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在油胺存在下通过“热注射”合成的铂纳米颗粒的表面活化。

Surface activation of Pt nanoparticles synthesised by "hot injection" in the presence of oleylamine.

作者信息

Humphrey Jo J L, Sadasivan Sajanikumari, Plana Daniela, Celorrio Verónica, Tooze Robert A, Fermín David J

机构信息

School of Chemistry, University of Bristol, Cantocks Close, Bristol, BS8 1TS (UK), Fax: (+44) 117-927-7985.

Sasol Technology UK Ltd. Purdie Building, North Haugh, St Andrews, Fife, Scotland, KY16 9ST (UK).

出版信息

Chemistry. 2015 Sep 1;21(36):12694-701. doi: 10.1002/chem.201501496. Epub 2015 Jul 17.

Abstract

Oleylamine (OA) based "hot injection" colloidal synthesis offers a versatile approach to the synthesis of highly monodisperse metallic and multi-metallic alloyed nanostructures in the absence of potentially toxic and unstable phosphine compounds. For application in heterogeneous catalysis and electrocatalysis, the adsorbed OA species at the metal surfaces should be effectively removed without compromising the structure and composition of the nanostructures. Herein, we investigate the removal of OA from colloidal Pt nanoparticles through 1) "chemical methods" such as washing in acetic acid or ethanol, and ligand exchange with pyridine; and 2) thermal pre-treatment between 185 and 400 °C in air, H2 or Ar atmospheres. The electrochemical reactivity of Pt nanoparticles is acutely affected by the presence of surface organic impurities, making this material ideal for monitoring the effectiveness of OA removal. The results showed that thermal treatment in Ar at temperatures above 400 °C provides highly active particles, with reactivity comparable to the benchmark commercial catalyst, Pt/ETEK. The mechanism involved in thermal desorption of OA was also investigated by thermogravimetric analysis coupled to mass spectrometry (TGA-MS). Oxidation of HCOOH and adsorbed CO in acidic solution were used as test reactions to assess the Pt electrocatalytic activity.

摘要

基于油胺(OA)的“热注入”胶体合成法提供了一种通用的方法,可在不存在潜在有毒且不稳定的膦化合物的情况下,合成高度单分散的金属及多金属合金纳米结构。对于非均相催化和电催化应用而言,金属表面吸附的OA物种应被有效去除,同时不影响纳米结构的结构和组成。在此,我们研究了通过以下方法从胶体铂纳米颗粒中去除OA:1)“化学方法”,如在乙酸或乙醇中洗涤,以及与吡啶进行配体交换;2)在空气、氢气或氩气气氛中于185至400 °C进行热预处理。表面有机杂质的存在会严重影响铂纳米颗粒的电化学反应性,这使得该材料成为监测OA去除效果的理想选择。结果表明,在氩气中于400 °C以上进行热处理可得到高活性颗粒,其反应性与基准商业催化剂Pt/ETEK相当。还通过热重分析与质谱联用(TGA-MS)研究了OA热脱附的机制。在酸性溶液中对甲酸和吸附的一氧化碳的氧化用作测试反应,以评估铂的电催化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d954/4676288/cf2bedc8dbec/chem0021-12694-fig001.jpg

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