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Graphene nanoribbon blends with P3HT for organic electronics

机译:石墨烯与P3HT nanoribbon混合有机食品电子产品

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摘要

In organic field-effect transistors (OFETs) the electrical characteristics of polymeric semiconducting materials suffer from the presence of structural/morphological defects and grain boundaries as well as amorphous domains within the film, hindering an efficient transport of charges. To improve the percolation of charges we blend a regioregular poly(3-hexylthiophene) (P3HT) with newly designed N = 18 armchair graphene nanoribbons (GNRs). The latter, prepared by a bottom-up solution synthesis, are expected to form solid aggregates which cannot be easily interfaced with metallic electrodes, limiting charge injection at metal-semiconductor interfaces, and are characterized by a finite size, thus by grain boundaries, which negatively affect the charge transport within the film. Both P3HT and GNRs are soluble/dispersible in organic solvents, enabling the use of a single step co-deposition process. The resulting OFETs show a three-fold increase in the charge carrier mobilities in blend films, when compared to pure P3HT devices. This behavior can be ascribed to GNRs, and aggregates thereof, facilitating the transport of the charges within the conduction channel by connecting the domains of the semiconductor film. The electronic characteristics of the devices such as the I_(on)/I_(off) ratio are not affected by the addition of GNRs at different loads. Studies of the electrical characteristics under illumination for potential use of our blend films as organic phototransistors (OPTs) reveal a tunable photoresponse. Therefore, our strategy offers a new method towards the enhancement of the performance of OFETs, and holds potential for technological applications in (opto)electronics.
机译:在有机场效应晶体管(ofet)电特性的聚合物半导体材料的存在结构/形态缺陷和谷物边界以及非晶域内这部电影,阻碍一个高效的运输指控。混合一个regioregular保利(3-hexylthiophene)(P3HT)和新设计的N = 18扶手椅石墨烯带的制作都(GNRs)。自底向上的方法合成,预计形成固体聚合物不容易与金属电极界面上的限制电荷注入在金属半导体接触接口和特点是有限的大小,从而通过晶界,消极影响电影内的电荷传输。P3HT和GNRs可溶性/分散在有机食品溶剂,使单个步骤的使用共沉积过程。电荷载体的三倍机动性在混合电影,相比单纯P3HT设备。GNRs,聚集,促进运输费用在传导通道连接的域半导体薄膜。等设备的特点I_(上)/ I_()比不受影响的添加GNRs在不同负载。光照下的电特性潜在的使用我们作为有机的混合的电影光电晶体管(选择)揭示了可调光敏反应。增强的新方法ofet的性能和潜力在(光电子)电子技术应用。

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