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Ru-N-C Hybrid Nanocomposite for Ammonia Dehydrogenation: Influence of N-doping on Catalytic Activity

机译:用于氨气脱氢的Ru-N-C杂化纳米复合材料:N掺杂对催化活性的影响

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摘要

For application to ammonia dehydrogenation, novel Ru-based heterogeneous catalysts, Ru-N-C and Ru-C, were synthesized via simple pyrolysis of a mixture of RuCl3·6H2O and carbon black with or without dicyandiamide as a nitrogen-containing precursor at 550 °C. Characterization of the prepared Ru-N-C and Ru-C catalysts via scanning transmission electron microscopy, in conjunction with energy dispersive X-ray spectroscopy, indicated the formation of hollow nanocomposites in which the average sizes of the Ru nanoparticles were 1.3 nm and 5.1 nm, respectively. Compared to Ru-C, the Ru-N-C nanocomposites not only proved to be highly active for ammonia dehydrogenation, giving rise to a NH3 conversion of >99% at 550 °C, but also exhibited high durability. X-ray photoelectron spectroscopy revealed that the Ru active sites in Ru-N-C were electronically perturbed by the incorporated nitrogen atoms, which increased the Ru electron density and ultimately enhanced the catalyst activity.
机译:为了应用于氨脱氢,通过在550°C下简单地热分解RuCl3·6H2O和炭黑与含或不含双氰胺作为含氮前体的混合物,合成了新型Ru基非均相催化剂Ru-NC和Ru-C。 。通过扫描透射电子显微镜和能量色散X射线光谱对制得的Ru-NC和Ru-C催化剂进行表征,表明形成了空心纳米复合材料,其中Ru纳米粒子的平均尺寸为1.3 nm和5.1 nm,分别。与Ru-C相比,Ru-N-C纳米复合材料不仅对氨脱氢具有很高的活性,在550°C下的NH3转化率> 99%,而且还具有很高的耐久性。 X射线光电子能谱表明,Ru-N-C中的Ru活性位被引入的氮原子电子干扰,这增加了Ru电子密度并最终增强了催化剂活性。

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