Rosenthal Joel, Nepomnyashchii Alexander B, Kozhukh Julia, Bard Allen J, Lippard Stephen J
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA 02139-4307 and Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin, Texas 78712.
J Phys Chem C Nanomater Interfaces. 2011 Sep 15;115(36):17993-18001. doi: 10.1021/jp204487r. Epub 2011 Aug 10.
Two new 2,2'-bipyridine (bpy) based ligands with ancillary BODIPY chromophores attached at the 4 and 4'-positions were prepared and characterized, which vary in the substitution pattern about the BODIPY periphery by either excluding (BB1) or including (BB2) a β-alkyl substituent. Both absorb strongly throughout the visible region and are strongly emissive. The basic photophysics and electrochemical properties of BB1 and BB2 are comparable to those of the BODIPY monomers on which they are based. The solid-state structures and electronic structure calculations both indicate that there is negligible electronic communication between the BODIPY moieties and the intervening bpy spacers. Electrogenerated chemiluminescence spectra of the two Bpy-BODIPY derivatives are similar to their recorded fluorescence profiles and are strongly influenced by substituents on the BODIPY chromophores. These 2,2'-bipyridine derivatives represent a new set of ligands that should find utility in applications including light-harvesting, photocatalysis, and molecular electronics.
制备并表征了两种新型的基于2,2'-联吡啶(bpy)的配体,其在4位和4'-位连接有辅助的BODIPY发色团,它们在BODIPY外围的取代模式有所不同,一种是排除(BB1)β-烷基取代基,另一种是包含(BB2)β-烷基取代基。二者在整个可见光区域都有强烈吸收且发射强烈。BB1和BB2的基本光物理和电化学性质与它们所基于的BODIPY单体相当。固态结构和电子结构计算均表明,BODIPY部分与中间的bpy间隔基之间的电子通讯可忽略不计。两种Bpy-BODIPY衍生物的电致化学发光光谱与其记录的荧光谱相似,并且受到BODIPY发色团上取代基的强烈影响。这些2,2'-联吡啶衍生物代表了一组新型配体,有望在包括光捕获、光催化和分子电子学等应用中发挥作用。