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
已经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。光致变色DHI 10a – f,12a – f,14a – f,16a –的辐照f和18a – f用多色光导致
甜菜碱9a – f,13a – f,15a – f,17a – f和19a – f。有色
甜菜碱形式 在室温下浓度为1×10 -5 mol / L的CH 2 Cl 2溶液中是显而易见的,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 nm(
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