Instituto de Carboquímica ICB-CSIC, Miguel Luesma Castán 4, 50018 Zaragoza, Spain.
Langmuir. 2011 Jun 7;27(11):7192-8. doi: 10.1021/la200730k. Epub 2011 Apr 29.
Arc discharge single-walled carbon nanotube (SWCNT) soot was treated under different experimental conditions including gas- and liquid-phase oxidation, heat treatment in an inert gas, and hydrogen gasification. Afterward, the samples were dispersed in a surfactant and centrifuged at a moderately high speed. Near-infrared spectra of all the dispersions were compared with that of raw SWCNT soot. The relative intensity of SWCNT characteristic spectral bands strongly increased for air-oxidized samples after centrifugation, while it did not substantially change for samples oxidized with nitric acid or reduced with hydrogen. The relative SWCNT spectral intensity was associated to the sample purity through the so-called purity index, which was calculated from the S(22) band transition of semiconducting SWCNTs. Air-oxidized samples experienced a 7-fold increase in the purity index during centrifugation, while it increased by only 2-3 times for nonoxidized samples. Air oxidation specifically improves the preferential stability of SWCNTs over carbonaceous impurities in the dispersions, leading to the highest purity index values reported so far.
电弧放电单壁碳纳米管 (SWCNT) 烟灰在不同的实验条件下进行处理,包括气相和液相氧化、在惰性气体中的热处理以及氢气气化。然后,将样品分散在表面活性剂中,并以中等高速离心。所有分散体的近红外光谱都与原始 SWCNT 烟灰的光谱进行了比较。对于空气氧化的样品,离心后 SWCNT 特征光谱带的相对强度大大增加,而用硝酸氧化或用氢气还原的样品则没有明显变化。通过所谓的纯度指数,将 SWCNT 光谱强度与样品纯度相关联,该指数是从半导体 SWCNT 的 S(22) 带跃迁计算得出的。在离心过程中,空气氧化的样品的纯度指数增加了 7 倍,而未氧化的样品仅增加了 2-3 倍。空气氧化特别提高了 SWCNT 在分散体中相对于碳质杂质的优先稳定性,从而得到了迄今为止报道的最高纯度指数值。