Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.
Inorg Chem. 2012 Apr 2;51(7):4285-92. doi: 10.1021/ic202758r. Epub 2012 Mar 20.
Four new boron-dipyrromethenes (BODIPYs) containing dipyrromethanyl substituents at 3,5-positions, bis(3,5-dipyrromethanyl) BODIPYs 5-8, were synthesized by treating their corresponding 3,5-diformyl BODIPYs 1-4 with excess pyrrole under mild acid catalyzed reaction conditions. The compounds 5-8 are stable and freely soluble in common organic solvents. One-dimensional, two-dimensional NMR, high resolution mass spectrometry (HRMS), absorption, fluorescence, and electrochemical techniques were used to characterize the compounds. The spectral and electrochemical studies indicated that dipyrromethanyl groups at 3,5-positions of BODIPY are less electron deficient compared to formyl groups at the same positions. The anion binding studies indicated that bis(3,5-dipyrromethanyl) BODIPY compounds containing four pyrrole NH groups showed preferential binding with F(-) ion over other anions, as confirmed by using NMR, fluorescence, and electrochemical studies.
四个新的硼二吡咯甲烷(BODIPY)含有二吡咯甲烷取代基在 3,5-位置,双(3,5-二吡咯甲烷)BODIPY 5-8,通过用过量吡咯在温和酸催化反应条件下处理它们相应的 3,5-二醛基 BODIPY 1-4 合成。化合物 5-8 是稳定的,并且在普通有机溶剂中自由溶解。一维、二维 NMR、高分辨率质谱(HRMS)、吸收、荧光和电化学技术用于表征化合物。光谱和电化学研究表明,与同一位置的甲酰基相比,BODIPY 3,5-位置的二吡咯甲烷基的电子缺乏性较小。阴离子结合研究表明,含有四个吡咯 NH 基团的双(3,5-二吡咯甲烷)BODIPY 化合物优先与 F(-)离子结合,而不是其他阴离子,这通过 NMR、荧光和电化学研究得到证实。