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Huge Enhancement of Luminescence from a Coaxial-Like Heterostructure of Poly(3-methylthiophene) and Au

机译:聚(3-甲基噻吩)和Au的同轴异质结构极大地增强了发光

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摘要

Recently, the light-matter interaction at nanoscale has attracted great interest from physicists, chemists and material scientists, as it gives peculiar optical properties that couldn’t be observed at the bulk scale. The synthesis and characterization of organic-inorganic heterostructures forming quantum dots, nanowires or nanotubes provide opportunities to understand their photophysical mechanism and to apply optoelecronic devices. Herein, we report a huge enhanced luminescence in a coaxial-like heterostructured poly (3-methylthiophene) (P3MT) with Au. We electrochemically synthesized P3MT nanowires (NWs) on a nanoporous template, and sequentially deposited Au on the surface of P3MT NWs. The diameter of heterostructured P3MT/Au NWs was about 200 nm, where the cladding-shape Au were about 10 nm. The visible range absorbance, with two new absorption peaks of P3MT/Au NWs, was significantly increased compared with that of P3MT NWs. Accordingly, the photoluminescence (PL) of a P3MT/Au NW was enormously increased; up to 170 times compared to that of P3MT NWs. More interestingly, an unexpected enhancement of PL was observed from cross-junction point of P3MT/Au NWs. The abnormal PL properties of P3MT/Au NWs were attributed to the charge transfer and the surface plasmon resonance between the cladding-shape Au and the core-shape P3MT, which resulted in the enhanced quantum yield. This incites us to reconsider the light-matter interaction in polymer-metal hybrid structures applicable for high-performance optoelectronic devices.
机译:近年来,纳米级的光-物质相互作用引起了物理学家,化学家和材料科学家的极大兴趣,因为它具有独特的光学特性,而这些特性在整体规模上是无法观察到的。形成量子点,纳米线或纳米管的有机-无机异质结构的合成和表征为了解其光物理机理和应用光电器件提供了机会。在这里,我们报告与Au同轴样的异质结构的聚(3-甲基噻吩)(P3MT)的巨大增强的发光。我们在纳米多孔模板上电化学合成了P3MT纳米线(NWs),并在P3MT NWs的表面上顺序沉积了Au。异质结构的P3MT / Au NW的直径约为200 nm,其中包层形Au约为10 nm。与P3MT NW相比,P3MT / Au NW的可见光吸收范围有了两个新的吸收峰。因此,P3MT / Au NW的光致发光(PL)大大增加了。是P3MT NW的170倍。更有趣的是,从P3MT / Au NWs的交叉点观察到PL的意外增强。 P3MT / Au NWs的PL特性异常归因于包层形Au和核形P3MT之间的电荷转移和表面等离子体共振,从而提高了量子产率。这促使我们重新考虑适用于高性能光电器件的聚合物-金属混合结构中的光-质相互作用。

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