首页> 外文期刊>Tetrahedron >Photochromism of dihydroindolizines. Part 12: synthesis and photochromism of novel pi-conjugated rigid dihydroindolizines as potential molecular electronic devices
【24h】

Photochromism of dihydroindolizines. Part 12: synthesis and photochromism of novel pi-conjugated rigid dihydroindolizines as potential molecular electronic devices

机译:二氢吲哚并嗪的光致变色。第12部分:作为潜在分子电子器件的新型π共轭刚性二氢吲哚并吲哚酮的合成和光致变色

获取原文
获取原文并翻译 | 示例
       

摘要

Novel carbon-rich photochromic dihydroindolizine DHI derivatives and new spirocyclopropenes have been synthesized. Three alternative synthetic pathways for the synthesis of DHI 10 have been established. Different Sonogashira-mediated coupling reactions have been applied to optimize the reaction conditions and to obtain the best yields. Palladium-mediated Sonogashira coupling of DHIs with 4-(thioacetyl)iodobenzene 13 and iodobenzene 17 yielded coupling products, which have potential applications in molecular electronics. Irradiation of photochromic DHIs 10a-f, 12a-f, 14a-f, 16a-f and 18a-f with polychromatic light leads to betaines 9a-f, 13a-f, 15a-f, 17a-f and 19a-f The coloured betaine forms are obvious in CH2Cl2 Solution with concentration of 1 x 10(5) mol/L at room temperature because of their slower 1,5-electrocyclization. All the absorption maxima of the Coloured betaines were found to be in the visible region and lie between 524 (betaine 9a) and 639 rim (betaine 15f). The kinetics of the thermal 1,5-electrocyclization was studied using multichannel UV-vis spectrophotometry. The kinetic measurements showed that the half-lives of the Coloured betaines are in the second domain and lie between 112 and 1379 s. A highly Pronounced increase in the half-lives of betaines bearing dimethyl Substituted pyridazine compared with non-substituted pyridazine betaines was monitored. A large increase in the photostability of both DHIs and betaines under investigation compared with the standard DHI was observed. The charged zwitterionic betaine Structures were stabilized by increasing the solvent polarity due to the electrostatic interactions between them. The tuning of the absorption maxima and the kinetic properties by changing the substitution in the fluorene part (region A) and pyridazine part (region C) will help these compounds to find their applications. (C) 2008 Elsevier Ltd. All rights reserved.
机译:合成了新型的富碳光致变色二氢吲哚嗪DHI衍生物和新的螺环丙烯。已经建立了用于合成DHI 10的三种替代合成途径。已经应用了不同的Sonogashira介导的偶联反应,以优化反应条件并获得最佳收率。钯介导的DHI与4-(硫代乙酰基)碘苯13和碘苯17的Sonogashira偶联产生偶联产物,在分子电子学中具有潜在的应用。用多色光照射光致变色DHI 10a-f,12a-f,14a-f,16a-f和18a-f导致甜菜碱9a-f,13a-f,15a-f,17a-f和19a-f甜菜碱的形式在CH2Cl2溶液中很明显,在室温下浓度为1 x 10(5)mol / L,因为它们的1,5-电环化较慢。发现有色甜菜碱的所有吸收最大值都在可见光区域,位于524(甜菜碱9a)和639边缘(甜菜碱15f)之间。使用多通道紫外可见分光光度法研究了热1,5-电环化反应的动力学。动力学测量表明,有色甜菜的半衰期在第二域,介于112和1379 s之间。与未取代的哒嗪甜菜碱相比,监测了带有二甲基取代的哒嗪的甜菜碱半衰期的显着增加。与标准DHI相比,观察到的DHI和甜菜碱的光稳定性大大提高。带电的两性离子甜菜碱结构由于它们之间的静电相互作用而通过增加溶剂极性而得以稳定。通过改变芴部分(区域A)和哒嗪部分(区域C)中的取代基来调节吸收最大值和动力学性能,将有助于这些化合物的应用。 (C)2008 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号