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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Two-photon absorption in a conformationally twisted D-π-A oligomer: a synergic photosensitizing approach for multiphoton lithography
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Two-photon absorption in a conformationally twisted D-π-A oligomer: a synergic photosensitizing approach for multiphoton lithography

机译:构象扭曲的D-π-A低聚物中的双光子吸收:多光子光刻的协同光敏方法

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摘要

A comparative study of the linear and nonlinear optical properties of a novel triphenylamine-pyrimidine alternated oligomer and its corresponding V-shaped quadrupolar monomer is presented. Both chromophores strikingly exhibit the same spectral shape when considering their respective one- and two-photon absorption spectra. This effect was attributed to a weak interchromophore coupling within the oligomer which exhibits a highly distorted geometry resulting in a strong reduction of the effective conjugation length. The recursive implementation of nine monomers into a three-dimensional architecture leads however to a cooperative enhancement of the two-photon absorption (2PA) cross-section with a δ_(MAX) of 5093 GM at 800 nm. This very high 2PA ability has been oriented to improve the two-photon induced polymerization efficiency of a bicomponent photoinitiator system implying a hexaarylbiimidazole used as a H-abstractor and an aliphatic amine used as a H-donor. The photosensitizing mechanism is investigated and we clearly show that the intrinsic photoinitiation efficiency of the oligomer is increased by a factor 3 as compared to its corresponding monomer. We therefore demonstrate that such a two-photon sensitizing strategy leads to a synergy effect combining a higher photoinitiation reactivity and a very large two-photon absorption cross-section.
机译:提出了一种新型三苯胺-嘧啶交替低聚物及其相应的V形四极单体的线性和非线性光学性质的比较研究。当考虑它们各自的单光子吸收光谱和双光子吸收光谱时,两个发色团均显着显示相同的光谱形状。该效应归因于低聚物内弱的发色团偶联,其表现出高度扭曲的几何结构,导致有效缀合长度的强烈减少。但是,将九种单体递归实现到三维结构中会导致双光子吸收(2PA)截面的协同增强,在800 nm处的δ_(MAX)为5093 GM。这种非常高的2PA能力旨在改善双组分光引发剂体系的双光子诱导的聚合效率,这意味着将六芳基联咪唑用作H-吸收剂,并将脂肪族胺用作H-供体。研究了光敏机理,我们清楚地表明,与相应的单体相比,低聚物的固有光引发效率提高了3倍。因此,我们证明了这样的双光子敏化策略导致了协同效应,该协同效应结合了较高的光引发反应性和非常大的双光子吸收截面。

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