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首页> 外文期刊>Catalysis science & technology >Pt-Carbon interaction-determined reaction pathway and selectivity for hydrogenation of 5-hydroxymethylfurfural over carbon supported Pt catalysts
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Pt-Carbon interaction-determined reaction pathway and selectivity for hydrogenation of 5-hydroxymethylfurfural over carbon supported Pt catalysts

机译:Pt-Carbon interaction-determined反应途径和选择性的加氢5-hydroxymethylfurfural碳支持工党催化剂

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摘要

In this study, a series of Pt catalysts supported on carbon materials, including multi-walled carbon nanotubes (CNTs), reduced graphene oxide (rGO), graphitic carbon nitride (g-C3N4), and biochar (BC), were prepared by impregnation or atomic layer deposition (ALD) methods. The Pt content was around 2.5 wt% in all the Pt catalysts, and the average Pt particle size was 1.6-1.9 nm for the catalysts prepared by impregnation (IM), which was slightly larger than that for the Pt catalyst (similar to 1.4 nm) synthesized by ALD (Pt/CNTs-ALD). All the catalysts were used in the HMF hydrogenation reaction to investigate the effects of different carbon materials and Pt-carbon interactions on the catalytic performance of catalysts. The main product was DHMF over all the Pt catalysts prepared by impregnation, and Pt/BC-IM showed the highest turnover frequency and the highest selectivity to DHMF (95.3%) with an HMF conversion of 94.6% after 10 h of reaction time, which could be due to the abundant functional groups on the surface of BC. Compared with the Pt/CNTs-IM catalyst, the main product over the Pt/CNTs-ALD catalyst was DMF with a yield of 47% due to the relatively strong Pt-CNT interaction. The interaction between Pt and CNTs is the dominant factor in determining the main product in the selective HMF hydrogenation reaction. After introducing Ni nanoparticles to Pt/CNTs-ALD, the yield of DMF reached 93.4% over the PtNi/CNTs-ALD bimetallic catalyst owing to the synergistic effect between Pt and Ni.
机译:在这项研究中,一系列的Pt催化剂支持碳材料,包括多壁碳纳米管,石墨烯氧化物减少(rGO),石墨碳氮化(g-C3N4)生物炭(BC),被浸渍或准备原子层沉积(ALD)方法。内容是约2.5 wt %的Pt催化剂和Pt粒子的平均大小催化剂由1.6 - -1.9海里浸渍(IM),比的Pt催化剂(类似于1.4海里)肾上腺白质退化症患者(Pt / CNTs-ALD)合成了。羟甲基糠醛加氢催化剂使用反应进行调查的影响不同碳材料和Pt-carbon交互催化剂的催化性能。产品是DHMF所有Pt催化剂由浸渍和Pt / BC-IM显示营业额最高频率和最高选择性DHMF(95.3%)和羟甲基糠醛转换94.6% 10 h后的反应时间,这可能是由于丰富的功能表面组织BC。Pt / CNTs-IM催化剂,主要产品Pt / CNTs-ALD催化剂DMF,收益率为47%由于相对强劲Pt-CNT交互。Pt和碳纳米管之间的相互作用主导因素在决定的主要产品选择性的羟甲基糠醛加氢反应。介绍镍纳米颗粒Pt / CNTs-ALD DMF的收益率达到了93.4%由于PtNi / CNTs-ALD双金属催化剂Pt和镍之间的协同效应。

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