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Optical spectroscopy of organic semiconductor monolayers

机译:有机半导体单层光谱光谱

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Growing interest in organic molecular semiconductors is stimulated by their promising applications in flexible devices. Pentacene is a benchmark organic semiconductor material because of its potential applications in high mobility thin film transistors and optoelectronic devices. Highly uniform monolayers of pentacene grown on polymeric substrate of poly alpha-methylstyrene exhibit sharp and intense free exciton (FE) luminescence at low temperatures. The FE emission displays characteristic intensity that grows quadratically with the number of layers. Large enhancements of Raman scattering intensities at the FE resonance enable the first observations of low-lying lattice vibrational modes in films reaching the single monolayer level. The low-lying modes exhibit characteristic changes when going from a single monolayer to two layers, revealing that a phase akin to a thin film phase of pentacene already emerges in structures of only two monolayers. A simple analysis of mode splittings offers estimates of the strength of inter-layer interactions. The results demonstrate novel venues for ultra-thin film characterization and studies of interface effects in organic molecular semiconductor structures.
机译:在柔性器件中,他们的有希望的应用刺激了对有机分子半导体的兴趣。 Pentacene是基准有机半导体材料,因为其在高迁移率薄膜晶体管和光电器件中的潜在应用。在低温下在聚α-甲基苯乙烯的聚合物基材上生长的高度均匀的五苯甲酸酯在低温下表现出尖锐且强烈的自由激子(Fe)发光。 Fe发射显示具有跨越层数繁殖的特征强度。 Fe Arronance的拉曼散射强度的大大增强使得在薄膜中的第一次观察到达到单层单层水平的薄膜中的低位晶格振动模式。当从单层单层到两层时,低洼模式表现出特征变化,揭示类似于五烯烯的薄膜相的相位已经出现在仅两种单层的结构中。模式分离的简单分析提供了层间相互作用的强度的估计。结果展示了用于超薄膜表征的新型场所,以及有机分子半导体结构中的界面效应的研究。

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