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Purification separation and extraction of inner tubes from double-walled carbon nanotubes by tailoring density gradient ultracentrifugation using optical probes

机译:通过使用光学探针定制密度梯度超速离心从双壁碳纳米管中纯化分离和提取内管

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摘要

We studied the effect of varying sonication and centrifugation parameters on double-walled carbon nanotubes (DWCNT) by measuring optical absorption and photoluminescence (PL) of the samples. We found that by using a low sonication intensity before applying density gradient ultracentrifugation (DGU), only inner tube species with a diameter  ⩽ 0.8 nm can be identified in absorption measurements. This is in stark contrast to the result after sonicating at higher intensities, where also bigger inner tubes can be found. Furthermore, by comparing PL properties of samples centrifugated either with or without a gradient medium, we found that applying DGU greatly enhances the PL intensity, whereas centrifugation at even higher speeds but without a gradient medium results in lower intensities. This can be explained by extraction of inner tubes from their host outer tubes in a two-stage process: the different shearing forces from the sonication treatments result in some DWCNT to be opened, whereas others stay uncut. A subsequent application of DGU leads to the extraction of the inner tubes or not if the host nanotube stayed uncut or no gradient medium was used. This work shows a pathway to avoid this phenomenon to unravel the intrinsic PL from inner tubes of DWCNT.
机译:我们通过测量样品的光吸收和光致发光(PL)研究了双壁碳纳米管(DWCNT)的超声和离心参数变化的影响。我们发现通过在应用密度梯度超速离心(DGU)之前使用低超声处理强度,在吸收测量中只能识别出直径为0.8 nm的内管物种。这与在较高强度下进行超声处理后的结果形成鲜明对比,在较高强度下也可以发现较大的内管。此外,通过比较使用或不使用梯度介质离心的样品的PL特性,我们发现使用DGU可以大大增强PL强度,而在没有梯度介质的情况下以更高的速度离心会导致强度降低。这可以通过分两步从内管的主外管中抽出内管来解释:超声处理产生的不同剪切力导致某些DWCNT打开,而其他DWCNT则保持未切割状态。如果主体纳米管保持未切割状态或未使用梯度介质,DGU的后续应用将导致内管的提取或未提取。这项工作表明了避免这种现象从DWCNT的内管中解出内在PL的途径。

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