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Nonlinear Optical Pigments. Two-Photon Absorption in Crosslinked Conjugated Polymers and Prospects for Remote Nonlinear Optical Thermometry

机译:非线性光学颜料。交联共轭聚合物中的双光子吸收及远程非线性光学温度测量的前景

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摘要

Nonlinear optical (NLO) pigments are compounds insoluble in solvents that exhibit phenomena related to nonlinear optical susceptibilities (χ where n = 2,3,...), e.g., two-photon absorption (2PA) which is related to the imaginary part of χ . Determination of spectrally-resolved 2PA properties for NLO pigments of macromolecular nature, such as coordination polymers or crosslinked polymers, has long been a challenging issue due to their particulate form, precluding characterizations with standard techniques such as Z-scan. In this contribution, we investigate thus far unknown spectrally-resolved 2PA properties of a new subclass of NLO pigments—crosslinked conjugated polymers. The studied compounds are built up from electron-donating (triphenylamine) and electron-withdrawing (2,2’-bipyridine) structural fragments joined by vinylene ( ) or vinyl(4-ethynylphenyl) ( ) aromatic bridges. 2PA properties of these polymers have been characterized in broad spectral range by specially modified two-photon excited fluorescence (TPEF) techniques: solid state TPEF (SSTPEF) and internal standard TPEF (ISTPEF). The impact of self-aggregation of aromatic backbones on the 2PA properties of the polymers has been evaluated through extended comparisons of NLO parameters, i.e., 2PA cross sections (σ ) and molar-mass normalized 2PA merit factors (σ /M) with those of small-molecular model compounds: and . By doing this, we found that the 2PA response of and is improved 2–3 times versus respective model compounds in the solid state form. Further comparisons with 2PA results collected for diluted solutions of and supports the notion that self-aggregated structure contributes to the observed enhancement of 2PA response. On the other hand, it is clear that and suffer from aggregation-caused quenching phenomenon, well reflected in time-resolved fluorescence properties as well as in relatively low values of quantum yield of fluorescence. Accordingly, despite improved intrinsic 2PA response, the effective intensity of two-photon excited emission for and is slightly lower relative to and . Finally, we explore temperature-resolved luminescence properties under one- (377 nm), two- (820 nm), and three-photon excitation (1020 nm) conditions of postsynthetically Eu -functionalized material, , and discuss its suitability for temperature sensing applications.
机译:非线性光学(NLO)颜料是不溶于溶剂的化合物,其表现出与非线性光学敏感性有关的现象(其中N = 2,3,......),例如与虚部的两光节吸收(2Pa)有关χ。测定大分子性质的NLO颜料的光谱分辨2Pa性能,例如配位聚合物或交联聚合物,长期以来一直是由于它们的颗粒形式而具有挑战性的问题,这是用标准技术如Z扫描等标准技术的禁止表征。在这一贡献中,我们研究了NLO颜料交联共轭聚合物的新亚类的未知光谱分辨的2Pa性能。所研究的化合物由电子提供(三苯胺)和由乙烯基()或乙烯基(4-乙炔基苯基)()芳族桥连接的电子抽出(2,2'-硼胺)结构片段。这些聚合物的2PA性质通过特别改性的双光子激发荧光(TPEF)技术在宽的光谱范围内表征:固态TPEF(SSTPEF)和内标TPEF(ISTPEF)。通过NLO参数的延长比较,通过NLO参数的延长比较来评估芳香骨架对聚合物的2Pa性质的影响,即2PA横截面(σ)和摩尔质量的2Pa优异因子(σ/ m)小分子模型化合物:和。通过这样做,我们发现使用固态形式的各种模型化合物的2PA响应和改善了2-3次。对稀释溶液收集的2PA结果进行了进一步的比较并支持自聚集结构有助于观察到的2PA反应的增强。另一方面,很清楚,并且遭受聚集导致的淬火现象,良好地反映在时间分辨的荧光性质中以及荧光的量子产率的相对较低的值中。因此,尽管改善了内在的2Pa响应,但相对于和略微较低的双光子激发发射的有效强度。最后,我们探讨了在欧官能化材料的一个(377nm),两 - (820nm),两个(820nm)和三光子激发(1020nm)条件下的温度分辨的发光性能,并讨论了温度传感应用的适用性。

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