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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Characteristics of Carbon Filament Formation from the Interaction of Cobalt-Tin Particles with Ethylene
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Characteristics of Carbon Filament Formation from the Interaction of Cobalt-Tin Particles with Ethylene

机译:钴锡粒子与乙烯相互作用形成碳丝的特征

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The effect of adding tin to a cobalt catalyst has been investigated using the decomposition of ethylene at 600℃ to form solid carbon, methane, and ethane as a probe reaction. These experiments have been carded out in a simple continuous flow system, where it was possible to monitor not only the gaseous product distribution but also the growth of filamentous carbon as a function of time. Particular attention was given to the modifications in the structural characteristics of the carbon filaments that accompanied the change in catalyst composition. These studies were performed using a combination of temperature-programmed oxidation, BET surface area measurements, and examination at high resolution in the transmission electron microscope. It was found that the introduction of as little as 0.5 wt % of tin into cobalt produced a dramatic increase in the catalytic activity of the bimetallic toward the formation of filamentous carbon. It is suggested that tin is responsible for inducing electronic perturbations in the surface of cobalt, and this phenomenon is reflected in a major change in the dissociative chemisorption behavior of ethylene on the mixed metal catalyst. Increasing the concentration level of tin did not lead to any further enhancement in the amount of carbon generated from the reaction; however, this procedure resulted in a significant increase in the rate of catalyst deactivation. It was also found that in the presence of tin the filamentous carbon structures acquired a high degree of crystalline order.
机译:利用乙烯在600℃分解形成固体碳,甲烷和乙烷作为探针反应,研究了向钴催化剂中添加锡的效果。这些实验已经在一个简单的连续流系统中完成,在该系统中,不仅可以监视气态产物的分布,还可以监测随时间变化的丝状碳的生长。特别注意了伴随催化剂组成变化的碳丝结构特征的改变。这些研究是结合使用程序升温氧化,BET表面积测量和在透射电子显微镜中高分辨率下的检查来进行的。已经发现,将低至0.5wt%的锡引入钴中使双金属催化剂对形成丝状碳的催化活性显着提高。提示锡是引起钴表面电子扰动的原因,这一现象反映在混合金属催化剂上乙烯的解离化学吸附行为的重大变化中。锡浓度水平的提高并未导致反应产生的碳量进一步增加;然而,该方法导致催化剂失活速率显着增加。还发现在锡的存在下,丝状碳结构获得了高度的晶体有序性。

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