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Fluorination of single-walled carbon nanotubes using gaseous XeF2

机译:使用气态XEF2氟化单壁碳纳米管

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An original tuneable fluorination method has been used to obtain fluorinated Single-Walled carbon Nanotubes (SWNT). Gaseous xenon difluoride (XeF2) is used as fluorinating agent at 120°C in order to increase the relative pressure of gaseous XeF2; the fluorination occurs through the gas/solid reaction, i.e. XeF2(g)/C. The quantities of SWNT and XeF2 can be tuned in order to control the fluorination level. The obtained fluorinated SWNTs (F-SWNT), with various fluorination levels, were compared with the results of the direct process using elemental fluorine. Raw SWNT and fluorinated SWNT were studied by optical absorption (OA), photoluminescence (PL) and Raman scattering (laser excitations at 1064 nm, 514 nm and 458 nm) using aqueous suspensions or solid samples. The suspensions have been elaborated in D20 with a surfactant. Optical measurements (OA and PL) show the influence of the fluorination on the optical properties of the SWNT through changes in the SWNT electronic structure. Changes in Raman Radial Breathing Modes (RBM) with the amount of fluorination have been discussed in terms of resonance for Raman scattering. Moreover, the evolution of the I_D/I_G ratio between the D-band (defect induced mode) and the G-band (tangential mode) is also studied as a function of the fluorinated level. Chemical selectivity of the fluorination is also investigated.
机译:已经使用原始可调谐的氟化方法来获得氟化单壁碳纳米管(SWNT)。气态氙二氟化物(XEAF2)用作120℃的氟化试剂,以增加气态XEF2的相对压力;通过气/固体反应,即XeF 2(G)/ C,发生氟化。可以调整SWNT和XEF2的量以控制氟化水平。将得到的氟化扫描(F-SWNT)与各种氟化水平的氟化水平与使用元素氟的直接过程的结果进行比较。通过光学吸收(OA),光致发光(PL)和拉曼散射(1064nm,514nm,458nm的激光激发)研究了原始的SWNT和氟化SWNT,使用含水悬浮液或固体样品。用表面活性剂在D20中阐述了悬浮液。光学测量(OA和PL)显示氟化对SWNT的光学性质的影响,通过SWNT电子结构的变化。在拉曼散射的共振方面,已经讨论了拉曼径向呼吸模式(RBM)的变化。此外,作为氟化水平的函数,也研究了D波段(缺陷感应模式)和G波段(切向模式)之间的I_D / I_G比的演变。还研究了氟化的化学选择性。

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