首页> 外文期刊>Journal of Catalysis >Preparation of nanostructured nitrogen-containing carbon catalysts for the oxygen reduction reaction from SiO_2-and MgO-supported metal particles
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Preparation of nanostructured nitrogen-containing carbon catalysts for the oxygen reduction reaction from SiO_2-and MgO-supported metal particles

机译:由SiO_2和MgO负载的金属颗粒制备用于氧还原反应的纳米结构含氮碳催化剂

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Nitrogen-containing carbon was prepared from the vapor deposition of acetonitrile at 900 deg C over silica-or magnesia-supported Fe,Co,and Ni particles.The byproducts of pyrolysis were monitored by mass spectrometry.The carbon formed from silica precursors was washed with KOH to remove the silica and HC1 to remove metal particles,whereas the carbon formed from magnesia samples was washed with HC1 to remove the support and the metal.The solid carbon product was characterized with N_2 physisorption to measure surface area and pore volume distribution,X-ray diffraction to determine the crystalline phases present,and temperature-programmed oxidation to determine ash and nitrogen content.Magnesia was more readily removed from the carbon compared with silica.A significant amount of metal,encased in carbon,remained in the samples after washing.The Co particles led to a higher content of bulk nitrogen in the carbon,as high as 2.9% based on oxidation measurements.Electron microscopy imaging confirmed that all of the metal particles catalyzed the formation of various types of carbon nanofibers,with the diameter and structure of the fibers varying with different metal-support precursor combinations.A possible application for these fibers is oxygen reduction reaction catalysts for proton-exchange membrane fuel cell cathodes.
机译:乙腈在900℃下气相沉积在二氧化硅或氧化镁负载的Fe,Co和Ni颗粒上,制得含氮碳,并通过质谱法监测热解副产物,然后将硅前体形成的碳用HCl洗涤。用KOH除去二氧化硅,用HCl除去金属颗粒,然后用HC1洗涤氧化镁样品形成的碳以除去载体和金属。通过N_2物理吸附对固体碳产物进行表征,以测量表面积和孔体积分布,X射线衍射法确定存在的晶相,并通过程序升温氧化法测定灰分和氮含量。与二氧化硅相比,氧化镁更容易从碳中除去。洗涤后样品中残留了大量金属,其中包含碳根据氧化测量,Co颗粒导致碳中的大量氮含量更高,高达2.9%。电子显微镜成像技术确认所有金属颗粒都催化了各种类型的碳纳米纤维的形成,其纤维的直径和结构随金属载体前体的不同而变化。这些纤维的可能应用是用于质子交换膜的氧还原反应催化剂燃料电池阴极。

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