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The syntheses, structures and nonlinear optical and related properties of salts with julolidinyl electron donor groups

机译:具朱螺烷基电子给体基团的盐的合成,结构,非线性光学和相关性质

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Twelve, dipolar cations with 2,3,6,7-tetrahydro-1H,5H-pyrido[3,2,ij]quinolin-9-yl (julolidinyl, Jd) electron donor groups and N-methyl/arylpyridinium, N-methylquinolinium or N-methylbenzothiazolium acceptor groups were synthesised. The chromophores were characterised as their PF_6~- salts using various techniques including electronic absorption spectroscopy and cyclic voltammetry; single crystal X-ray structures were determined for a large number of salts, all of which form nonpolar materials. A broad correlation between the electron acceptor strength and the degree of bond length alternation is evident. A key focus of this work is detailed comparisons of the Jd-containing chromophores with their previously studied 4-(dimethylamino)phenyl (Dap) analogues. Molecular, quadratic, nonlinear optical responses were determined using femtosecond hyper-Rayleigh scattering at both 1300 and 800 nm, as well as using Stark (electroabsorption) spectroscopic studies of intense, visible π→π~* intramolecular charge-transfer bands. Substantial red shifts in the latter transitions are observed on replacing Dap with Jd which indicate that the latter acts as a more effective π-electron donor. With few exceptions, both hyper-Rayleigh scattering and Stark data generally show that using Jd instead of Dap increases the static first hyperpolarizability β0, in accord with expectations based on the two-state model. β0 values as high as 6 times larger than that of the chromophore in the technologically important material E-4'-(dimethyla-mino)-N-methyl-4-stilbazolium tosylate are observed.
机译:十二个偶极阳离子,带有2,3,6,7-四氢-1H,5H-吡啶基[3,2,ij]喹啉-9-基(朱力啶基,Jd)电子供体基团和N-甲基/芳基吡啶鎓,N-甲基喹啉合成了N-甲基苯并噻唑鎓受体基团。使用各种技术,包括电子吸收光谱法和循环伏安法,将发色团表征为其PF_6〜-盐。确定了大量盐的单晶X射线结构,所有盐均形成非极性物质。电子受体强度与键长交替程度之间存在广泛的相关性。这项工作的重点是将含Jd的发色团与其先前研究的4-(二甲基氨基)苯基(Dap)类似物进行详细比较。使用飞秒在1300和800 nm处的超瑞利散射以及严格的可见π→π〜*分子内电荷转移带的Stark(电吸收)光谱研究,确定了分子,二次非线性光学响应。在用Jd代替Dap时,观察到后者转变中的大量红移,这表明后者充当了更有效的π电子供体。除了极少数例外,超瑞利散射和Stark数据均显示,与基于二态模型的预期一致,使用Jd代替Dap可以增加静态第一超极化率β0。在具有重要技术意义的材料E-4'-(二甲基-氨基)-N-甲基-4-苯乙烯基唑鎓中,观察到的β0值是发色团的6倍。

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