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A Method for Determination of Metals in Hybrid Metal Oxide/Metal-Carbon Nanotubes Catalysts

机译:一种杂交金属氧化物/金属 - 碳纳米管催化剂中金属测定金属的方法

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摘要

Carbon nanotubes (CNTs), due to their special structure and unique properties, are still one of the most interesting materials for scientists. Recently, carbon nanotubes were proposed as a new type of carbon support for catalysts. Fe, Pt, Ni, Co, and other metals anchored to CNTs are used in various reactions. Due to the fact that production processes are usually unpredictable and the total amount of metal/metal oxide deposited on the CNTs may only be estimated, the methods for examining the chemical composition are necessary. In this study, fast and simple inductively coupled plasma atomic emission spectrometry (ICP-AES) with slurry nebulization was proposed for metal content determination in hybrid CeZrO2/CNT, Ni-CeZrO2/CNT, and Ni/CNT materials. Slurries were prepared by 30 min ultrasonication of appropriate amount of investigated material in 1% Triton X-100 solution. Optimal range of slurry concentration and optimal RF plasma power were established (40–400 mg L−1, 1.2 kW, resp.). Obtained results proved that this method may be applied for determination of Ce, Zr, and Ni in hybrid CNT-based materials.
机译:由于它们的特殊结构和独特的特性,碳纳米管(CNT)仍然是科学家最有趣的材料之一。最近,提出碳纳米管作为催化剂的一种新型碳载体。在各种反应中使用固定在CNT上的Fe,Pt,Ni,Co和其他金属。由于生产过程通常是不可预测的,并且只估计,沉积在CNT上的金属/金属氧化物的总量仅估计,所以需要进行用于检查化学成分的方法。在本研究中,提出了具有浆料雾化的快速和简单的电感耦合等离子体原子发射光谱法(ICP-AES),用于金属含量测定杂交CeZro2 / CNT,Ni-Cezro2 / CNT和Ni / CNT材料中。在1%Triton X-100溶液中,通过30分钟的超声处理浆料制备浆料。建立了最佳浆料浓度和最佳RF等离子体电力范围(40-400mg L-1,1.2 kW,REAC。)。得到的结果证明,该方法可以应用于杂交CNT基材料中的Ce,Zr和Ni的测定。

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