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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >High Selectivity cum Yield Gel Electrophoresis Separation of Single-Walled Carbon Nanotubes Using a Chemically Selective Polymer Dispersant
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High Selectivity cum Yield Gel Electrophoresis Separation of Single-Walled Carbon Nanotubes Using a Chemically Selective Polymer Dispersant

机译:使用化学选择性聚合物分散剂的单壁碳纳米管的高选择性兼收率凝胶电泳分离

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Pure semiconducting single-walled carbon nanotubes (SWNTs) are appealing for many electronic circuits and devices, but the presence of parasitic metallic SWNTs in all as-synthesized nanotube samples makes this application elusive. Agarose gel electrophoresis (AGE) can be used to separate metallic from semiconducting SWNTs when applied in conjunction with the use of an appropriate surfactant or dispersant. To date, only sodium dodecyl sulfate (SDS) has been reported to permit considerable separation with AGE. In this study, we report on the considerably better separation achieved using chondroitin sulfate (CS-A) as a dispersant in AGE compared with SDS-assisted AGE. The CS-A assisted AGE technique may be used to produce in a single pass semiconducting SWNTs with purity of 95%, compared with 85% purity achieved with SDS-assisted AGE for the same arc discharge nanotubes. Further, the yield of CS-A assisted AGE is about 25%, which is in the order of 5 to 10 times the yields of other reported highly selective techniques. Semiconducting SWNTs produced via CS-A/AGE were used to fabricate field effect transistors (FET) with mobilities of ~2 to 8 cm~2/(V s) and on/off ratios from 102 to 10s, which are significantly higher than the mobility of 0.7 cm~2/(V s), and on/off ratio of 104 reported for FETs made with semiconducting SWNTs produced by SDS-assisted AGE. The excellent yield-cum-purity single-pass separation is achievable with this unique chemically selective CS-A dispersant with AGE because of its ability to wrap the nanotubes well, high degree of sulfation making the nanotube/CS-A hybrid highly charged and amine functionality resulting in preselectivity of metallic nanotubes, causing the latter to migrate much more effectively under a uniform electric field.
机译:纯半导体单壁碳纳米管(SWNT)吸引了许多电子电路和设备,但是在所有合成的纳米管样品中都存在寄生金属SWNT,这使该应用变得难以捉摸。结合适当的表面活性剂或分散剂一起使用时,琼脂糖凝胶电泳(AGE)可用于将金属SWNT与半导电SWNT分离。迄今为止,仅十二烷基硫酸钠(SDS)被报道可以进行AGE分离。在这项研究中,我们报道了与SDS辅助AGE相比,使用硫酸软骨素(CS-A)作为AGE中的分散剂可实现更好的分离。 CS-A辅助AGE技术可用于单程生产纯度为95%的半导体单壁碳纳米管,相比之下,对于相同的电弧放电纳米管,SDS辅助AGE可获得85%的纯度。此外,CS-A辅助AGE的产率约为25%,约为其他报道的高选择性技术产率的5至10倍。通过CS-A / AGE生产的半导体SWNT用于制造场效应晶体管(FET),其迁移率为〜2至8 cm〜2 /(V s),开/关比为102至10s,远高于据报道,采用SDS辅助AGE生产的半导体SWNT制成的FET的迁移率为0.7 cm〜2 /(V s),开/关比为104。这种独特的具有AGE的化学选择性CS-A分散剂可实现出色的收率和纯度单程分离,这是因为其能够很好地包裹纳米管,具有高度的硫酸化能力,从而使纳米管/ CS-A杂化带高电荷和胺官能团导致金属纳米管的预选择性,导致金属纳米管在均匀电场下更有效地迁移。

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