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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Supramolecular structures fabricated through the epitaxial growth of semiconducting poly(3-hexylthiophene) on carbon nanotubes as building blocks of nanoscale electronics
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Supramolecular structures fabricated through the epitaxial growth of semiconducting poly(3-hexylthiophene) on carbon nanotubes as building blocks of nanoscale electronics

机译:通过在碳纳米管上外延生长聚(3-己基噻吩)制成的超分子结构,作为纳米级电子学的基础

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Semiconducting conjugated polymers such as (3-hexylthiophene) (P3HT) and carbon nanotubes are attractive for applications that include field-effect transistors and photovoltaic devices. In these applications, the control of structure, morphology, and alignment of polymer chains is important from the perspective of charge transport and optical properties. In this regard, a novel solution-based nuclea-tion approach involving direct epitaxial nucleation of nanofibers of the poly(3-hexylthiophene) (P3HT) polymer on carbon nanotubes (CNTs) leading to supramolecular structure is demonstrated. The supra-molecular structure of P3HT on CNTs is characterized by nucleation of oriented precursors of P3HT on CNTs by an epitaxial mechanism, onto which high density transcrystalline ~ 800-1000 nm long nano-fibrils of P3HT with a thickness of ~2-3 nm are nucleated in a periodic manner. The nanoscale structure of epitaxially grown P3HT nanofibrils exhibits optical and photoluminescence characteristics. The UV-vis spectroscopy study of the fabricated structure suggests a combination of π-π electronic transition and a strong lattice vibration in the conjugated polymer chains. Furthermore, the supramolecular structure is envisaged to comprise an accumulating thread for charge transport, onto which nanometer thick long fibrils are assembled in a periodic configuration with strong potential for organic-inorganic optoelectronic devices, in conclusion, the described approach enables fabrication of supramolecular structure on carbon nanotube-based electrodes, making it attractive for functional devices.
机译:半导体共轭聚合物,例如(3-己基噻吩)(P3HT)和碳纳米管,对于包括场效应晶体管和光电器件的应用具有吸引力。在这些应用中,从电荷传输和光学性质的角度来看,控制聚合物链的结构,形态和排列非常重要。在这一点上,展示了一种新颖的基于溶液的核方法,该方法涉及在碳纳米管(CNT)上直接聚合聚(3-己基噻吩)(P3HT)聚合物的纳米纤维的纳米纤维,从而形成超分子结构。碳纳米管上P3HT的超分子结构的特征在于外延机理使碳纳米管上的P3HT取向前体成核,在其上形成厚约2-3 nm的P3HT的高密度跨晶〜800-1000 nm长纳米纤维。以周期性的方式成核。外延生长的P3HT纳米纤维的纳米级结构表现出光学和光致发光特性。所制造结构的紫外可见光谱研究表明,π-π电子跃迁与共轭聚合物链中的强晶格振动相结合。此外,设想超分子结构包括用于电荷传输的蓄积线,纳米级的长原纤维以周期性构型组装在其上,具有有机-无机光电器件的强大潜力,总之,所描述的方法使得能够在其上制造超分子结构。碳纳米管基电极,使其对功能器件有吸引力。

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