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Bottom-up fabrication of graphene-based conductive polymer carpets for optoelectronics

机译:基于石墨烯的导电聚合物地毯的自下而上的制造用于光电子

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摘要

The covalent attachment of one dimensional (1D) polymer brush onto a two-dimensional (2D) material presents an appealing strategy to fabricate anisotropic polymer membranes, namely "polymer carpets''. Conductive polymer carpets that are based on graphene and conductive polymers are especially interesting due to their potential in microelectronics, actuators and optoelectronics. Here we describe a versatile method for the covalent grafting of the poly(3-hexylthiophene) (P3HT) brush onto large area graphene to fabricate conductive polymer carpets through a combination of photografting polymerization and Kumada catalyst transfer polycondensation (KCTP) to grow P3HT (up to 260 nm) on single layer graphene forming conductive polymer carpets (i.e. G-PS-P3HT). Raman mapping revealed that the grafting reactions occurred on native graphene defects, without deteriorating the conjugation plane of graphene. The advanced architecture of G-PS-P3HT resulted in a high photocurrent (ca. 0.3 mA cm(-2)) under light irradiation in a junction with MoS2 to form efficient an p-n heterostructure, with promising potential in optoelectronics.
机译:一维(1D)聚合物刷在二维(2D)材料上的共价附着呈现了制造各向异性聚合物膜的吸引力策略,即“聚合物地毯”。尤其是基于石墨烯和导电聚合物的导电聚合物地毯由于它们在微电子,致动器和光电子中的潜力而有趣。在这里,我们描述了一种通用的方法,用于将聚(3-己基噻吩)(P3HT)刷在大面积石墨烯上的共价接枝以通过光聚合聚合的组合制造导电聚合物地毯。 Kumada催化剂转移缩聚(KCTP)在单层石墨烯(即G-PS-P3HT)上生长p3ht(高达260nm)。拉曼映射显示,在天然石墨烯缺陷上发生接枝反应,而不会恶化缀合石墨烯平面。G-PS-P3HT的先进架构导致高光电流(CA.0.3 mA cm(-2))在与MOS2的结合的光照射下,形成有效的P-N异质结构,具有光电子的有希望的潜力。

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