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Broadband Two-Photon Absorption Characteristics of Highly Photostable Fluorenyl-Dicyanoethylenylated [60]Fullerene Dyads

机译:高光稳定性芴基-二氰基乙烯基化的[60]富勒烯二元化合物的宽带双光子吸收特性。

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We synthesized four C60-(light-harvesting antenna) dyads C60 (>CPAF-Cn) (n = 4, 9, 12, or 18) 1-Cn for the investigation of their broadband nonlinear absorption effect. Since we have previously demonstrated their high function as two-photon absorption (2PA) materials at 1000 nm, a different 2PA wavelength of 780 nm was applied in the study. The combined data taken at two different wavelength ranges substantiated the broadband characteristics of 1-Cn. We proposed that the observed broadband absorptions may be attributed by a partial π-conjugation between the C60 > cage and CPAF-Cn moieties, via endinitrile tautomeric resonance, giving a resonance state with enhanced molecular conjugation. This transient state could increase its 2PA and excited-state absorption at 800 nm. In addition, a trend of concentration-dependent 2PA cross-section (σ2 ) and excited-state absorption magnitude was detected showing a higher σ value at a lower concentration that was correlated to increasing molecular separation with less aggregation for dyads C60(>CPAF-C18) and C60(>CPAF-C9), as better 2PA and excited-state absorbers. View Full-Text
机译:为了研究它们的宽带非线性吸收效应,我们合成了四个C60-(光捕获天线)二元组C60(> CPAF-Cn)(n = 4、9、12或18)1-Cn。由于我们先前已经证明了它们在1000 nm处具有高光子吸收能力(2PA),因此在本研究中使用了2PA波长为780 nm的不同材料。在两个不同波长范围内获取的组合数据证实了1-Cn的宽带特性。我们提出,观察到的宽带吸收可能归因于C60>笼和CPAF-Cn部分之间的部分π共轭,通过内定互变异构共振,产生具有增强的分子共轭的共振态。这种瞬态可以增加其2PA和在800 nm处的激发态吸收。此外,检测到浓度依赖性的2PA横截面(σ2)和激发态吸收强度的趋势,在较低的浓度下显示出较高的σ值,这与二元化合物C60(> CPAF- C18)和C60(> CPAF-C9),是更好的2PA和激发态吸收剂。查看全文

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