A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28, bld. 1 Vavilova St., 119334 Moscow, Russian Federation.
Plekhanov Russian University of Economics, Stremyanny per. 36, 117997 Moscow, Russian Federation.
Org Biomol Chem. 2023 May 17;21(19):4084-4094. doi: 10.1039/d3ob00255a.
An efficient approach for the preparation of 3,5-dicarborane-substituted BODIPY conjugates was developed the functionalization of 3,5-dibromo-8-pentafluorophenyl-BODIPY with neutral and anionic carborane -nucleophiles. It was found that 3,5-dicarborane-substituted BODIPYs could be easily modified with a third carborane cluster using SAr substitution reactions of the -fluorine atom in the -pentafluorophenyl BODIPY substituent with the corresponding carborane -nucleophile affording boron-enriched BODIPYs in good yields. The influence of bromine atom substitution with carborane moieties on the position of absorption and fluorescence bands and the fluorescence quantum yields of the prepared BODIPYs were analyzed. The crystal structures of BODIPYs 4 and 8 were investigated. Density functional theory methods (DFT wb97xd/6-31G* and wb97xd/lanl2dz) were performed to study the geometrical structures, electronic characteristics, the highest occupied and the lowest unoccupied molecular orbitals (HOMOs and LUMOs) and other chemical descriptors of the synthesized compounds.
开发了一种高效的方法,用于制备 3,5-二硼取代 BODIPY 缀合物,该方法通过中性和阴离子硼烷亲核试剂对 3,5-二溴-8-五氟苯基-BODIPY 进行功能化。研究发现,3,5-二硼取代 BODIPY 可以通过 -五氟苯基 BODIPY 取代基中 -氟原子与相应的硼烷亲核试剂的 SAr 取代反应,很容易用第三个硼烷簇进行修饰,从而以良好的产率得到富硼 BODIPY。分析了硼原子取代与硼烷部分对吸收和荧光带的位置以及所制备 BODIPY 的荧光量子产率的影响。研究了 BODIPY 4 和 8 的晶体结构。使用密度泛函理论方法(DFT wb97xd/6-31G* 和 wb97xd/lanl2dz)研究了合成化合物的几何结构、电子特性、最高占据和最低未占据分子轨道(HOMO 和 LUMO)和其他化学描述符。