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首页> 外文期刊>Nanotechnologies in Russia >Effect of the Structure of Carbon Support on the Selectivity of Pt/C Catalysts for the Hydrogenation of Acetylene to Ethylene
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Effect of the Structure of Carbon Support on the Selectivity of Pt/C Catalysts for the Hydrogenation of Acetylene to Ethylene

机译:碳载体结构对乙烯氢化氢化氢化的Pt / C催化剂的选择性

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By using electron microscopy and X-ray photoelectron spectroscopy (XPS), we show that the structure of support carbon materials—carbon nanofiber (CNF) and carbon nanotubes (CNTs)—affects the electronic state and dimensions of supported platinum particles that display a high catalytic activity in acetylene hydrogenation. Increasing the platinum load of Pt/CNF catalysts from 0.075 to 0.3 wt % results in the enhancement of their catalytic activity, while the selectivity for ethylene diminishes, which we attribute to the enlargement of the platinum nanoparticles. The XPS studies reveal that the platinum exists in, on average, a more oxidized state at the surface of CNTs when compared to CNF. The detection of substantial quantities of the residual chlorine at the surface of the prepared support materials allows us to relate the presence of the platinum in oxidized states to the existence of surface sites differing in quantity and the ability to stabilize platinum at the surface of nanocarbons. In addition, we have established that a fraction of the platinum in Pt/CNT catalysts is located inside of the CNTs. The differences between the states of CNT- and CNF-supported platinum nanoparticles affect catalyst selectivity: the Pt(0.075%)/CNT catalyst exhibits superior selectivity for ethylene hydrogenation than the Pt(0.075%)/CNF catalyst. The enhanced selectivity may be a consequence of the different electronic structures of the platinum in the considered catalysts and faster Knudsen diffusion of acetylene molecules, when compared to ethylene molecules, in CNT channels.
机译:通过使用电子显微镜和X射线光电子谱(XPS),我们表明支持碳材料 - 碳纳米纤维(CNF)和碳纳米管(CNT)的结构 - 表现出高的铂颗粒的电子状态和尺寸乙炔氢化催化活性。将Pt / CNF催化剂的铂负荷从0.075升至0.3重量%导致其催化活性的增强,而乙烯的选择性减少,我们归因于铂纳米颗粒的扩大。 XPS研究表明,与CNF相比,平均存在于CNT表面的铂在CNT表面中的更氧化状态。在制备的载体表面的表面上检测大量的残余氯允许我们将铂在氧化状态中的存在与纳米烃表面的表面不同的表面位点的存在性和稳定铂的能力。此外,我们已经确定Pt / CNT催化剂中的铂的一部分位于CNT的内部。 CNT-和CNF支持的铂纳米颗粒的状态影响催化剂选择性:Pt(0.075%)/ CNT催化剂的乙烯氢化选择性优于Pt(0.075%)/ CNF催化剂。与CNT通道相比,增强的选择性可以是所考虑的催化剂中铂的不同电子结构的结果,并且与乙烯分子相比,乙炔分子的扩散速度扩散。

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