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Effect of the fluorination technique on the surface-fluorination patterning of double-walled carbon nanotubes

机译:氟化工艺对双壁碳纳米管表面氟化构图的影响

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摘要

Double-walled carbon nanotubes (DWCNTs) are fluorinated using (1) fluorine F2 at 200 °C, (2) gaseous BrF3 at room temperature, and (3) CF4 radio-frequency plasma functionalization. These have been comparatively studied using transmission electron microscopy and infrared, Raman, X-ray photoelectron, and near-edge X-ray absorption fine structure (NEXAFS) spectroscopy. A formation of covalent C–F bonds and a considerable reduction in the intensity of radial breathing modes from the outer shells of DWCNTs are observed for all samples. Differences in the electronic state of fluorine and the C–F vibrations for three kinds of the fluorinated DWCNTs are attributed to distinct local surroundings of the attached fluorine atoms. Possible fluorine patterns realized through a certain fluorination technique are revealed from comparison of experimental NEXAFS F K-edge spectra with quantum-chemical calculations of various models. It is proposed that fluorination with F2 and BrF3 produces small fully fluorinated areas and short fluorinated chains, respectively, while the treatment with CF4 plasma results in various attached species, including single or paired fluorine atoms and –CF3 groups. The results demonstrate a possibility of different patterning of carbon surfaces through choosing the fluorination method.
机译:使用(1)在200°C下的氟F2,(2)在室温下的气态BrF3和(3)CF4射频等离子体功能化对双壁碳纳米管(DWCNT)进行氟化。使用透射电子显微镜和红外,拉曼,X射线光电子和近边缘X射线吸收精细结构(NEXAFS)光谱对这些进行了比较研究。对于所有样品,都观察到了DWCNTs外壳上共价CF键的形成以及径向呼吸模式强度的显着降低。三种氟化DWCNT的氟电子状态和CF振动的差异归因于所附着的氟原子的不同局部周围环境。通过实验NEXAFS F K边缘光谱与各种模型的量子化学计算的比较,揭示了通过某种氟化技术实现的可能的氟模式。建议用F2和BrF3氟化分别产生小的完全氟化区域和短氟化链,而CF4等离子体处理产生各种附着的物种,包括单个或成对的氟原子和–CF3基团。结果表明,通过选择氟化方法,可能在碳表面上形成不同的图案。

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