首页> 外文会议>Meeting of the Electrochemical Society;International Meeting on Chemical Sensors >(Invited) Ultrasonication-Induced Inner Shell Extraction from Double-Wall Carbon Nanotubes: Characterisation By Ultracentrifugation and in Situ Raman and Fluorescence-Excitation Spectroscopy
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(Invited) Ultrasonication-Induced Inner Shell Extraction from Double-Wall Carbon Nanotubes: Characterisation By Ultracentrifugation and in Situ Raman and Fluorescence-Excitation Spectroscopy

机译:(邀请的)超声诱导的双壁碳纳米管萃取:通过超速离心和原位拉曼和荧光激发光谱表征

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We show that ultrasonication readily extracts inner tubes from double-wall carbon nanotubes (DWCNT), and characterize the process by density gradient ultracentrifugation (DGU) combined with in situ spectroscopic characterization in the density gradient. Our observations also cast new light on the question whether or not the inner tubes of DWCNTs fluoresce, which has been the subject of a long-standing debate, even though single-DWCNT experiments have already shown drastic PL-quenching for the inner CNT. Indeed, in previous studies to characterise the PL from DWCNTs, they were typically solubilised using sonication, while here we see that upon sonication, the extraction of the inner tubes from the DWCNTs leads to much more efficiently fluorescing SWCNTs. First, the DWCNTs were purified from SWCNTs and bundles using density gradient ultracentrifugation (DGU). Then, sonication is applied, after which the extracted inner tubes were separated from the DWCNTs by DGU and characterised by in situ resonant Raman and PL-spectroscopy as a function of height in the centrifuge tube. These subsequent in situ DGU experiments unambiguously prove the extraction of inner SWCNTs from DWCNTs, even by very brief sonication, and sonication-time-dependent measurements show that the process quickly saturates.
机译:我们表明,超声波易于从双壁碳纳米管(DWCNT)中提取内管,并通过密度梯度超速离心(DGU)结合密度梯度的原位光谱表征该过程。我们的观察结果还对问题的内部管道施放了新的光线,而不是荧光的内部管,这是一直是长期辩论的主题,即使单DWCNT实验已经显示出内部CNT的激烈的PL淬火。实际上,在先前的研究中,为了表征来自DWCNT的PL,它们通常使用超声处理溶解,而在这里我们看到,在超声处理时,来自DWCNT的内部管的提取导致更有效的荧光SWCNT。首先,使用密度梯度超速离心(DGU)从SWCNT和捆捆净化DWCNT。然后,应用超声处理,之后将提取的内管通过DGU与DWCNT分离,并通过原位共振拉曼和PL-光谱作为离心管中的高度的函数。即使通过非常简要的超声处理,这些随后的原位DGU实验可以明确证明来自DWCNT的内部SWCNTS的提取,并且超声处理时间依赖性测量表明该过程迅速饱和。

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