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The role of structure and surface chemistry of carbon nanomaterials in catalytic conversion of 1,2-dichloroethane

机译:碳纳米材料的结构和表面化学在1,2-二氯乙烷催化转化中的作用

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摘要

Catalytic activity of several graphene- and diamond-based carbon nanomaterials was compared in the reaction of the 1,2-dichloroethane (DCE) conversion using the impulse microcatalytic method. Only nanodiamonds and Ni-doped nanodiamonds were active in the reaction. A comparison of XRD, XPS, DRIFTS, and BET studies suggested that nitrogen or oxygen-containing groups could be responsible for the catalytic activity in the DCE reaction. However, nitrogen-doped carbon nanoflakes, which contain much more nitrogen-containing groups, showed no activity in the DCE conversion; hence, it is unlikely that nitrogen-containing groups of nanodiamond surface are active centers in DCE conversion. The role of oxygen-containing groups was studied in a test reaction of 2-propanol dehydrogenation/dehydration both nanotubes and nanodiamonds were active in the reaction; however, no activity of carbon nanotubes in the DCE conversion suggests that oxygen-containing groups are not active in the DCE conversion. As a result, we suggest that the carbon surface of nanodiamonds might be catalytically active in the DCE reaction. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用脉冲微催化方法在1,2-二氯乙烷(DCE)转化反应中比较了几种石墨烯和金刚石基碳纳米材料的催化活性。在反应中仅纳米金刚石和掺杂Ni的纳米金刚石是活性的。 XRD,XPS,DRIFTS和BET研究的比较表明,含氮或含氧基团可能是DCE反应中催化活性的原因。然而,含有更多含氮基团的氮掺杂碳纳米片在DCE转化中没有活性。因此,纳米金刚石表面的含氮基团不太可能成为DCE转化中的活性中心。在2-丙醇脱氢/脱水的测试反应中研究了含氧基团的作用,纳米管和纳米金刚石均在反应中具有活性。然而,在DCE转化中碳纳米管没有活性表明含氧基团在DCE转化中没有活性。结果,我们认为纳米金刚石的碳表面可能在DCE反应中具有催化活性。 (C)2015 Elsevier B.V.保留所有权利。

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