Palao Eduardo, Duran-Sampedro Gonzalo, de la Moya Santiago, Madrid Miriam, García-López Carmen, Agarrabeitia Antonia R, Verbelen Bram, Dehaen Wim, Boens Nöel, Ortiz María J
Department of Organic Chemistry I, Universidad Complutense de Madrid, Facultad de Ciencias Químicas , Ciudad Universitaria s/n, E-28040 Madrid, Spain.
Department of Chemistry, KU Leuven , Celestijnenlaan 200 f, B-3001 Leuven, Belgium.
J Org Chem. 2016 May 6;81(9):3700-10. doi: 10.1021/acs.joc.6b00350. Epub 2016 Apr 14.
The generality of the palladium-catalyzed C-C coupling Negishi reaction when applied to haloBODIPYs is demonstrated on the basis of selected starting BODIPYs, including polyhalogenated and/or asymmetrical systems, and organozinc reagents. This reaction is an interesting synthetic tool in BODIPY chemistry, mainly because it allows a valuable regioselective postfunctionalization of BODIPY chromophores with different functional groups. In this way, functional patterns that are difficult to obtain by other procedures (e.g., asymmetrically functionalized BODIPYs involving halogenated positions) can now be made. The regioselectivity is achieved by controlling the reaction conditions and is based on almost-general reactivity preferences, and the nature of the involved halogens and their positions. This ability is exemplified by the preparation of a series of new BODIPY dyes with unprecedented substitution patterns allowing noticeable lasing properties.
基于选定的起始BODIPY(包括多卤代和/或不对称体系)以及有机锌试剂,证明了钯催化的C-C偶联根岸反应应用于卤代BODIPY时的通用性。该反应是BODIPY化学中一种有趣的合成工具,主要是因为它允许用不同官能团对BODIPY发色团进行有价值的区域选择性后功能化。通过这种方式,现在可以制备出其他方法难以获得的功能模式(例如,涉及卤代位置的不对称功能化BODIPY)。区域选择性是通过控制反应条件实现的,基于几乎普遍的反应偏好以及所涉及卤素的性质及其位置。通过制备一系列具有前所未有的取代模式并具有显著激光特性的新型BODIPY染料,例证了这种能力。