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Lewis Basicity of Nitrogen-Doped Graphite Observed by CO2 Chemisorption

机译:CO 2化学吸附观察氮掺杂石墨的Lewis碱度

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摘要

The characteristics of CO2 adsorption sites on a nitrogen-doped graphite model system (N-HOPG) were investigated by X-ray photoelectron and absorption spectroscopy and infrared reflection absorption spectroscopy. Adsorbed CO2 was observed lying flat on N-HOPG, stabilized by a charge transfer from the substrate. This demonstrated that Lewis base sites were formed by the incorporation of nitrogen via low-energy nitrogen-ion sputtering. The possible roles of twofold coordinated pyridinic N and threefold coordinated valley N (graphitic N) sites in Lewis base site formation on N-HOPG are discussed. The presence of these nitrogen species focused on the appropriate interaction strength of CO2 indicates the potential to fine-tune the Lewis basicity of carbon-based catalysts.
机译:通过X射线光电子和吸收光谱以及红外反射吸收光谱研究了氮掺杂石墨模型系统(N-HOPG)上CO 2吸附位的特征。观察到吸附的CO2平坦地躺在N-HOPG上,并通过从基材转移电荷来稳定。这证明了路易斯碱位是通过经由低能氮离子溅射结合氮而形成的。讨论了在N-HOPG上Lewis碱基形成中,两个配位吡啶基N和三个配位谷N(石墨N)位点的可能作用。这些氮物质的存在集中在适当的CO2相互作用强度上,表明有可能微调碳基催化剂的Lewis碱度。

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