Yamaguchi Kirara, Murai Toshiaki, Hasegawa Saki, Miwa Yohei, Kutsumizu Shoichi, Maruyama Toshifumi, Sasamori Takahiro, Tokitoh Norihiro
Department of Chemistry and Biomolecular Science, Faculty of Engineering, Gifu University , Yanagido, Gifu 501-1193, Japan.
JST , ACT-C, 4-1-8 Honcho, Kawaguchi, Saitama 332-0012, Japan.
J Org Chem. 2015 Nov 6;80(21):10742-56. doi: 10.1021/acs.joc.5b01963. Epub 2015 Oct 14.
A series of 5-N-arylaminothiazoles was prepared by reacting thioamide dianions derived from secondary thioamides with thioformamides, followed by sequential oxidation with iodine. X-ray analyses demonstrated that they adopt structures that are highly twisted from planar conformations. Their orientations were tuned by the steric and/or electronic interactions of the substituents at their 2-, 4-, and 5-positions. The 5-aminothiazoles exhibited a range of fluorescent emissions, from blue to orange. Although the absorption spectra were independent of the polarity of the solvent, fluorescent emissions were influenced by the polarity of the solvent: in more polar solvents, the emissions were red-shifted. These phenomena were examined in terms of Lippert-Mataga plots and the change in the dipole moment between the ground and excited states. They also exhibited emissions in the solid state, again from blue to orange. Cyclic voltammetry of the 5-aminothiazoles showed reversible waves of one-electron oxidation. The half-potential of the oxidation was reduced by the introduction of electron-donating groups to the phenyl groups on the nitrogen atom at the 5-position. DFT calculations were carried out to determine the energy levels of the HOMO and LUMO. Finally, the results of TG-DTA showed that they are thermally stable.
通过使仲硫酰胺衍生的硫酰胺二阴离子与硫代甲酰胺反应,随后用碘进行连续氧化,制备了一系列5-N-芳基氨基噻唑。X射线分析表明,它们采用的结构与平面构象高度扭曲。它们的取向通过其2-、4-和5-位取代基的空间和/或电子相互作用进行调节。5-氨基噻唑表现出从蓝色到橙色的一系列荧光发射。尽管吸收光谱与溶剂的极性无关,但荧光发射受溶剂极性的影响:在极性更大的溶剂中,发射发生红移。根据Lippert-Mataga图以及基态和激发态之间偶极矩的变化对这些现象进行了研究。它们在固态下也有发射,同样是从蓝色到橙色。5-氨基噻唑的循环伏安法显示出单电子氧化的可逆波。通过在5-位氮原子上的苯基引入供电子基团,氧化的半波电位降低。进行了DFT计算以确定HOMO和LUMO的能级。最后,TG-DTA的结果表明它们具有热稳定性。