薗头偶联反应
卤化
化学
溴
卤素
荧光
萘
发光
苯基
光化学
药物化学
立体化学
结晶学
有机化学
材料科学
催化作用
物理
钯
烷基
光电子学
量子力学
作者
Masanori Sakai,Shinya Fujio,Ayumi Imayoshi,Shigeru Nagase,Katsuyuki Okada,Yoshitane Imai,Masashi Hasegawa,Kazunori Tsubaki
标识
DOI:10.1002/asia.202400159
摘要
Abstract In this study, compounds with phenylethynyl (PE) groups introduced at all of the possible positions of the methylene‐bridged structure of the 1,1′‐bi‐2‐naphthol backbone ( 3‐PE to 8‐PE ) were synthesized. Compounds with four or six phenylethynyl groups ( 3,6‐PE , 4,6‐PE , 5,6‐PE , 6,7‐PE , and 3,4,6‐PE ) were also synthesized. The key reaction for the synthesis of these compounds was the Sonogashira reaction using halogen scaffolds. The new transformation methods include (1) selective bromination of the 5‐position of the binaphthyl skeleton and (2) bromination of the 6‐position and then iodination of the 4‐position, followed by the Sonogashira reaction of iodine at the 4‐position and lithiation and protonation of bromine at the 6‐position. The optical properties of the compounds were evaluated. The extension of the π system greatly differed depending on the position of the phenylethynyl group. 4‐PE , 4,6‐PE , and 3,4,6‐PE , in which the phenylethynyl groups were introduced in the extended direction of the naphthalene linkage axis, showed longer absorption and emission wavelengths and higher fluorescence quantum yields than the other compounds. In circularly polarized luminescence measurements, 7‐PE showed a relatively large g lum value, an interesting finding that reverses the sense.
科研通智能强力驱动
Strongly Powered by AbleSci AI