with different arylboronic acids can be efficiently carried out in water and under air by means of micellar coupling. The careful tuning of reaction conditions enables preparation of symmetrically and unsymmetrically substituted derivatives. The moderate to good yields obtained, along with the wide variety of available substitution patterns, makes this sustainable methodology very useful for the preparation
                                    4,7-二
溴-5,6-二
氟-
2,1,3-苯并噻二唑与不同的芳基
硼酸的Suzuki-Miyaura交叉偶联反应可以在胶束中通过
水和空气有效地进行。仔细调节反应条件可以制备对称和不对称取代的衍
生物。所获得的中等到良好的产率,以及各种各样的可用替代模式,使得这种可持续的方法学对于制备发光光电材料的基础材料非常有用。