首页> 外文期刊>Journal of Electronic Materials >Composite Semiconductor Material of Carbon Nanotubes and Poly[5,5'-bis(3-dodecyl-2-thienyl)-2,2'-bithiophene] for High-Performance Organic Thin-Film Transistors
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Composite Semiconductor Material of Carbon Nanotubes and Poly[5,5'-bis(3-dodecyl-2-thienyl)-2,2'-bithiophene] for High-Performance Organic Thin-Film Transistors

机译:碳纳米管和高性能有机薄膜晶体管用聚[5,5'-双(3-十二烷基-2-噻吩基)-2,2'-联噻吩]的复合半导体材料

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摘要

A nonpercolating network of non-covalently functionalized single-walled carbon nanotubes was embedded within air-stable poly[5,5'-bis(3-dodecyl-2-thienyl)-2,2'-bithiophene] (PQT-12) thin films for the purpose of enhancing the field-effect mobility in thin-film transistors. The host polymer was used to stabilize the nanotubes in suspension through π-orbital overlap caused by simple application of ultrasonication. The stable nanotube suspension was cast into two different device architectures, both of which exhibited excellent on/off ratios ranging from 10~5 to 10~6 and dramatically improved mobilities compared with pristine PQT-12 semiconductor. A single-layer film with nanotubes embedded throughout was easy to fabricate and had mobility up to 0.34 cm~2/Vs, an enhancement of over 3× compared with PQT-12. Placing the nanotubes closer to the dielectric surface in a dual-layer approach resulted in a mobility improvement of up to six times (0.58 cm~2/Vs). The effects of the nanotube content on the polymer interaction within the suspension, film morphology, and electrical properties were investigated as well.
机译:非共价功能化的单壁碳纳米管的非渗透网络嵌入空气稳定的聚[5,5'-双(3-十二烷基-2-噻吩基)-2,2'-联噻吩](PQT-12)薄中为了增强薄膜晶体管中的场效应迁移率,该薄膜被用作薄膜。主体聚合物用于通过简单应用超声处理引起的π轨道重叠来稳定纳米管的悬浮液。稳定的纳米管悬浮液被浇铸成两种不同的器件结构,与原始的PQT-12半导体相比,这两种器件均显示出出色的开/关比,范围从10〜5到10〜6,并且迁移率大大提高。贯穿整个纳米管的单层薄膜易于制造,迁移率高达0.34 cm〜2 / Vs,与PQT-12相比提高了3倍以上。通过双层方法将纳米管放置在靠近电介质表面的位置,迁移率提高了六倍(0.58 cm〜2 / Vs)。还研究了纳米管含量对悬浮液中聚合物相互作用,膜形态和电性能的影响。

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