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Using Nonionic Surfactants for Production of Semiconductor-type Carbon Nanotubes by Gel-based Affinity Chromatography

机译:使用非离子表面活性剂通过基于凝胶的亲和色谱法生产半导体型碳纳米管

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摘要

Single-wall carbon nanotubes (SWCNTs) have remarkable properties based on their electronic properties, i.e., metallic or semiconducting types, but as-grown SWCNTs contain a mixture of both types. Presented here is an improved and detailed method for producing highly enriched semiconducting SWCNTs from a colloidal suspension of as-grown SWCNTs through agarose gel column-based affinity chromatography. After a 2 wt% sodium dodecyl sulphate (SDS) aqueous dispersion of SWCNTs is passed through the gel column, metal-type SWCNTs preferentially elute out using a 1.5 wt% SDS solution. Semiconductor-type SWCNTs are subsequently recovered from the column using a 2 wt% Pluronic F77 surfactant solution eluent. The semiconductor-enriched fraction purity is in the 90-95% range, based on detailed UV-vis-NIR absorption and resonant Raman spectroscopy characterization of the particulate suspension. Semiconductor-type SWCNTs are recovered in solid form by evaporating the suspension fluid, and heating the dried sample in air to a temperature just above the Pluronic decomposition temperature. Using Pluronic and other nonionic-type surfactants can aid the scalability of the chromatographic production of semiconducting SWCNT samples.
机译:基于单壁碳纳米管(SWCNT)的电子特性,即金属或半导体类型,它们具有显着的特性,但是生长后的SWCNT包含两种类型的混合物。本文介绍了一种改进且详细的方法,可通过琼脂糖凝胶柱亲和色谱法从生长的SWCNT的胶体悬浮液中生产高浓度的半导体SWCNT。将2 wt%的十二烷基硫酸钠(SDS)的SWCNT水性分散液通过凝胶柱后,优先使用1.5 wt%的SDS溶液洗脱出金属型SWCNT。随后使用2 wt%的Pluronic F77表面活性剂溶液洗脱液从色谱柱中回收半导体型SWCNT。基于微粒悬浮液的详细UV-vis-NIR吸收和共振拉曼光谱表征,富含半导体的馏分纯度在90-95%的范围内。通过蒸发悬浮液,然后将干燥的样品在空气中加热到刚好高于Pluronic分解温度的温度,以固态形式回收半导体类型的SWCNT。使用Pluronic和其他非离子型表面活性剂可以帮助扩展半导体SWCNT样品色谱生产的规模。

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