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The luminescence quantum yield of organic one-dimensional periodic nanostructures

机译:一维有机周期纳米结构的发光量子产率

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We employed nanoimprint lithography and soft moulding techniques to print one-dimensional nanostructures with submicron periodicity onto organic films made of different light-emitting materials. We studied and compared the emission and absorption of the chromophores before and after the lithography processes, demonstrating that the lithography techniques actually preserve the optical properties of light-emitting molecules. In particular, we investigated the photoluminescence efficiency, finding that all our patterned light-emitting materials show enhanced luminescence emission (up to a factor larger than two) with respect to the untextured film, as a consequence of the printed nanostructure. This is ascribed to the decrease of the self-absorption path induced by the grating-enhanced forward scattering.
机译:我们采用了纳米压印光刻技术和软模塑技术,将具有亚微米周期性的一维纳米结构印刷到由不同发光材料制成的有机薄膜上。我们研究并比较了光刻过程前后发色团的发射和吸收,证明了光刻技术实际上保留了发光分子的光学特性。特别地,我们研究了光致发光效率,发现由于印刷的纳米结构,我们所有的图案化发光材料相对于未纹理化的膜均显示出增强的发光发射(高达两倍以上)。这归因于由光栅增强的前向散射引起的自吸收路径的减小。

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