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Surface composition changes of redox stabilized bimetallic CoCu nanoparticles supported on silica under H2 and O2 Atmospheres and during reaction between CO2 and H2: In situ X-ray spectroscopic characterization

机译:在H2和O2气氛下以及在CO2和H2之间的反应过程中,负载在氧化硅上的氧化还原稳定的双金属CoCu纳米颗粒的表面组成变化:原位X射线光谱表征

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摘要

In this paper, we report the colloidal synthesis and detailed characterization of 11 nm bimetallic CoCu nanoparticle catalysts. Presently Co and Cu is an attractive combination because of their respective properties for industrially important Fischer-Tropsch and methanol synthesis reactions of CO (and CO2) with H2. We report the preparation of catalysts by deposition of bimetallic metal nanoparticles, both within mesoporous silica (MCF-17) and on the native oxide surface of a silicon wafer. Subsequent phase separation into phase-segregated (i.e. dimer) particles is found to occur upon redox treatment. These nanoparticle catalysts have then been investigated using an array of techniques including synchrotron-based ambient pressure X-ray photoelectron spectroscopy (APXPS) and in situ near edge and extended X-ray absorption fine structure (NEXAFS/EXAFS) spectroscopies. CO2 hydrogenation is used as a probe reaction. All three techniques combine to show that an oxygen atmosphere segregates copper to the surface. In doing so the oxygen produces oxides of both Co and Cu metals. Significant hydrogen pressure and temperature are required to fully rereduce both metals to a metallic state as demonstrated by NEXAFS spectroscopy. Under the conditions of the CO 2/H2 reaction monitored in situ using NEXAFS spectroscopy, both metals exist in a fully reduced state at 2.7 bar, 1:3 CO 2:H2, and 260 C. © 2013 American Chemical Society.
机译:在本文中,我们报告了11 nm双金属CoCu纳米颗粒催化剂的胶体合成和详细表征。目前,Co和Cu是有吸引力的组合,因为它们对于工业上重要的费-托和CO(和CO 2)与H 2的甲醇合成反应具有各自的性质。我们报告了通过在中孔二氧化硅(MCF-17)内和硅片的天然氧化物表面上沉积双金属金属纳米粒子来制备催化剂。发现在氧化还原处理后发生相分离成相分离的(即二聚体)颗粒。然后使用一系列技术研究了这些纳米颗粒催化剂,这些技术包括基于同步加速器的环境压力X射线光电子能谱(APXPS)以及在边缘附近的原位和扩展X射线吸收精细结构(NEXAFS / EXAFS)的光谱学。将CO2氢化用作探针反应。所有这三种技术的结合表明氧气气氛将铜隔离在表面上。这样做,氧气会同时生成Co和Cu金属的氧化物。如NEXAFS光谱所示,要使两种金属完全还原为金属状态,需要大量的氢气压力和温度。在使用NEXAFS光谱原位监测CO 2 / H2反应的条件下,两种金属在2.7 bar,1:3 CO 2:H2和260 C下均以完全还原态存在。©2013 American Chemical Society。

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