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Time-dependent evolution of the nitrogen configurations in N-doped graphene films

机译:n掺杂石墨烯薄膜中氮施加的时间依赖性演变

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Large-area time-controlled N-doped graphene films were grown on a Cu foil using an ammonia-assisted atmospheric pressure chemical vapour deposition (APCVD) technique. The films were characterized using optical microscopy, Raman spectroscopy and X-ray photoelectron spectroscopy (XPS). Raman spectroscopy was used to verify the doping level and lattice distortion in the graphene films, while the degree of N-doping (N/C at%) and nitrogen configuration were studied by XPS. The results showed that both total nitrogen content and configurations were strongly dependent on the growth time. Notably, at short growth time (2 min) pyridinic-rich films with high oxygen content (~47.02%) were produced, and the total N-content reached a maximum of 4.68%. Interestingly longer growth times (20 min) also resulted in pyridinic-rich films, however both the nitrogen and oxygen content were at lower values of 2.84% and ~26.07%, respectively. With increasing growth time, Raman spectra showed a decreasing doping level as seen by the decreasing I _(D) / I _(G) ratio values (1.2 to 0.9). Additionally, Raman peaks exhibited a systematic blue shift due to the compressive strain on the C–C bonds during the incorporation of N atoms into the graphene lattice. The study presents an in-depth understanding of how exposure time of N-dopants influences the bonding states of nitrogen atoms to carbon atoms, thereby dictating the resulting type of N-configurations as well as the overall nitrogen content.
机译:使用氨辅助大气压化学气相沉积(APCVD)技术在Cu箔上生长大面积的时间控制的N掺杂石墨烯薄膜。使用光学显微镜,拉曼光谱和X射线光电子能谱(XPS)表征薄膜。拉曼光谱法用于验证石墨烯薄膜中的掺杂水平和晶格变形,而XPS研究了N-掺杂(N / C为%)和氮构型的程度。结果表明,总氮含量和构型均依赖于生长时间。值得注意的是,在短的生长时间(2分钟)产生具有高氧含量的吡啶的薄膜(〜47.02%),总N含量最高为4.68%。有趣地长时间的生长时间(20分钟)也导致富含吡啶的薄膜,然而氮和氧含量分别为2.84%和〜26.07%的较低值。随着增长时间的增加,拉曼光谱显示出通过减小的I _(d)/ I _(g)比率值(1.2至0.9)所见的降低掺杂水平。另外,拉曼峰由于C-C键在N原子掺入石墨烯晶格期间,由于C-C键对的压缩菌株表现出系统的蓝色偏移。该研究提出了对N-掺杂剂的曝光时间影响氮原子的粘合状态对碳原子的深入了解,从而决定了所得的N-配置以及整体氮含量。

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