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首页> 外文期刊>ChemCatChem >Carbon Nanomaterials in Catalysis: Proton Affinity, Chemical and Electronic Properties, and their Catalytic Consequences
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Carbon Nanomaterials in Catalysis: Proton Affinity, Chemical and Electronic Properties, and their Catalytic Consequences

机译:催化碳纳米材料:质子亲和力,化学和电子性质,以及它们的催化后果

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摘要

The effects of the orientation of a graphene sheet, the edge structure of carbon nanofibers, and different surface functional groups on proton affinity, interactions with metal nanoparticles, and electronic modification of these structures, together with their catalytic consequences, have been reviewed. The ratio of prismatic to basal sites on the edge of carbon nanofibers has a remarkable influence on the properties of both the CNFs and the metal nanoparticles that are supported on it. The proton affinity, interactions with metal particles, and electronic density of metal particles can be further manipulated by fine-tuning the functional groups, such as oxygen groups, and by B/N-doping of the CNFs. The possibilities of using carbon nanofibers with different graphite-sheet orientations as a platform for rational catalyst design are discussed.
机译:石墨烯片的取向,碳纳米纤维的边缘结构和不同表面官能团对质子亲和力,与金属纳米颗粒的相互作用以及这些结构的电子改性以及它们的催化后果以及其催化后果的影响。 碳纳米纤维边缘对基底位点的棱柱形与基底位的比率对CNF和金属纳米颗粒的性质具有显着影响。 通过微调诸如氧基团的官能团和CNFS的B / N-掺杂,可以进一步操纵质子亲和力,与金属颗粒的相互作用和金属颗粒的电子密度进一步操纵。 讨论了使用具有不同石墨纸张取向作为合理催化剂设计平台的碳纳米纤维的可能性。

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