首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Stereoselective synthesis and properties of 1,3-bis(dicyanomethylidene)indane-5-carboxylic acid acceptor fragment containing nonlinear optical chromophores
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Stereoselective synthesis and properties of 1,3-bis(dicyanomethylidene)indane-5-carboxylic acid acceptor fragment containing nonlinear optical chromophores

机译:含非线性光学发色团的1,3-双(二氰基亚甲基)茚满-5-羧酸受体片段的立体选择性合成和性能

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摘要

A series of organic push-pull type chromophores using indane-1,3-dione 5-carboxylic acid (IDCA) and novel 1,3-bis(dicyanomethylidene) indane 5-carboxylic acid (CICA) electron acceptor fragments have been synthesized and characterized. NMR and X-ray analysis revealed that condensation reactions with the CICA fragment were stereoselective and yielded benzylidenes and azomethines with E double bond configurations. Due to the non-planar geometry these compounds are chiral and were acquired as a racemic mixture. The subsequent functionalization of the carboxylic acid group with 5,5,5-triphenylpentan-1-ol yielded solution-processable glass forming materials (6, 8, 10, 13) with glass transition temperature values of 76-134 degrees C. The nonlinear optical (NLO) properties of these compounds were characterized using quantum chemical calculations and second harmonic generation (SHG) measurements in coronapoled thin glassy films. The twisted geometry of the CICA based materials was shown to be beneficial to the macroscopic NLO performance due to the less pronounced solid phase stacking compared to the flat IDCA based compounds. The presence of site isolating groups at both the acceptor and donor ends of the molecule in compound 13 resulted in a considerable NLO efficiency increase. Non-centrosymmetric crystals of CICA based N, N-dimethylaminobenzylidene 7b were obtained and showed a SHG response comparable to urea.
机译:合成并表征了一系列使用茚满-1,3-二酮5-羧酸(IDCA)和新型1,3-双(二氰基亚甲基)茚满5-羧酸(CICA)电子受体片段的有机推挽发色团。 NMR和X射线分析表明,与CICA片段的缩合反应是立体选择性的,并产生具有E双键构型的亚苄基和甲亚胺。由于非平面几何形状,这些化合物是手性的,并以外消旋混合物形式获得。随后用5,5,5-三苯基戊烷-1-醇对羧酸基团进行官能化,可制得可溶液加工的玻璃成型材料(6、8、10、13),玻璃化转变温度为76-134摄氏度。这些化合物的光学(NLO)性能是使用量子化学计算和二次极化玻璃化薄膜中的二次谐波生成(SHG)测量来表征的。由于与平坦的IDCA基化合物相比,固相堆积不那么明显,因此表明CICA基材料的扭曲几何形状对宏观NLO性能有利。在化合物13中分子的受体端和供体端上都存在位点隔离基团导致NLO效率显着提高。获得了基于CICA的N,N-二甲基氨基亚苄基7b的非中心对称晶体,并显示出与尿素相当的SHG响应。

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