IPCMS, CNRS-Strasbourg University, UMR7504, 23 Rue du Loess, BP 43, 67034 Strasbourg, France.
Department of Chemistry, College of Arts and Sciences, Khalifa University, Abu Dhabi P.O. Box 127788, United Arab Emirates.
Molecules. 2021 Dec 24;27(1):89. doi: 10.3390/molecules27010089.
We report herein the synthesis of siloxane-functionalized CBP molecules (4,4'-bis(carbazole)-1,1'-biphenyl) for liquid optoelectronic applications. The room-temperature liquid state is obtained through a convenient functionalization of the molecules with heptamethyltrisiloxane chains via hydrosilylation of alkenyl spacers. The synthesis comprises screening of metal-catalyzed methodologies to introduce alkenyl linkers into carbazoles (Stille and Suzuki Miyaura cross-couplings), incorporate the alkenylcarbazoles to dihalobiphenyls (Ullmann coupling), and finally introduce the siloxane chains. The used conditions allowed the synthesis of the target compounds, despite the high reactivity of the alkenyl moieties bound to π-conjugated systems toward undesired side reactions such as polymerization, isomerization, and hydrogenation. The features of these solvent-free liquid CBP derivatives make them potentially interesting for fluidic optoelectronic applications.
我们在此报告了用于液体光电应用的硅氧烷功能化 CBP 分子(4,4'-双(咔唑)-1,1'-联苯)的合成。通过烯基间隔物的硅氢化反应,将硅氧烷链方便地官能化到分子上,即可获得室温下的液态。该合成包括筛选金属催化方法,将烯基键合到咔唑上(Stille 和 Suzuki Miyaura 交叉偶联),将烯基咔唑引入二卤联苯(Ullmann 偶联),最后引入硅氧烷链。尽管与π共轭体系结合的烯基部分对聚合、异构化和氢化等不需要的副反应具有很高的反应性,但所使用的条件允许目标化合物的合成。这些无溶剂液体 CBP 衍生物的特点使它们有可能成为流体光电应用的有趣材料。