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Highly Efficient and Scalable Separation of Semiconducting Carbon Nanotubes via Weak Field Centrifugation

机译:通过弱场离心高效高效地分离半导体碳纳米管

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The identification of scalable processes that transfer random mixtures of single-walled carbon nanotubes (SWCNTs) into fractions featuring a high content of semiconducting species is crucial for future application of SWCNTs in high-performance electronics. Herein we demonstrate a highly efficient and simple separation method that relies on selective interactions between tailor-made amphiphilic polymers and semiconducting SWCNTs in the presence of low viscosity separation media. High purity individualized semiconducting SWCNTs or even self-organized semiconducting sheets are separated from an as-produced SWCNT dispersion via a single weak field centrifugation run. Absorption and Raman spectroscopy are applied to verify the high purity of the obtained SWCNTs. Furthermore SWCNT - network field-effect transistors were fabricated, which exhibit high ON/OFF ratios (10(5)) and field-effect mobilities (17?cm(2)/Vs). In addition to demonstrating the feasibility of high purity separation by a novel low complexity process, our method can be readily transferred to large scale production.
机译:对于将单壁碳纳米管(SWCNT)的无规混合物转移到具有高含量半导体物种的馏分中的可扩展过程的识别,对于SWCNT在高性能电子学中的未来应用至关重要。本文中,我们展示了一种高效且简单的分离方法,该方法依赖于在低粘度分离介质存在下,量身定制的两亲聚合物与半导体SWCNT之间的选择性相互作用。高纯度个性化的半导电SWCNT甚至自组织的半导电片材通过一次弱电场离心分离就从生产的SWCNT分散体中分离出来。应用吸收和拉曼光谱法来验证所获得的SWCNT的高纯度。此外,制造了SWCNT-网络场效应晶体管,该晶体管表现出高的开/关比(10(5))和场效应迁移率(17?cm(2)/ Vs)。除了证明通过新颖的低复杂度工艺进行高纯度分离的可行性外,我们的方法还可以轻松地用于大规模生产。

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