Meares Adam, Satraitis Andrius, Santhanam Nithya, Yu Zhanqian, Ptaszek Marcin
Department of Chemistry and Biochemistry, University of Maryland, Baltimore County, 1000 Hilltop Circle, Baltimore, Maryland 21250, United States.
J Org Chem. 2015 Apr 17;80(8):3858-69. doi: 10.1021/acs.joc.5b00119. Epub 2015 Apr 7.
We report here the synthesis and characterization of BODIPY-chlorin arrays containing a chlorin subunit, with tunable deep-red (641-685 nm) emission, and one or two BODIPY moieties, absorbing at 504 nm. Two types of arrays were examined: one where BODIPY moieties are attached through a phenylacetylene linker at the 13- or 3,13-positions of chlorin, and a second type where BODIPY is attached at the 10-position of chlorin through an amide linker. Each of the examined arrays exhibits an efficient (≥0.80) energy transfer from BODIPY to the chlorin moiety in both toluene and DMF and exhibits intense fluorescence of chlorin upon excitation of BODIPY at ∼500 nm. Therefore, the effective Stokes shift in such arrays is in the range of 140-180 nm. Dyads with BODIPY attached at the 10-position of chlorin exhibit a bright fluorescence in a range of solvents with different polarities (i.e., toluene, MeOH, DMF, and DMSO). In contrast to this, some of the arrays in which BODIPY is attached at the 3- or at both 3,13-positons of chlorin exhibit significant reduction of fluorescence in polar solvents. Overall, dyads where BODIPY is attached at the 10-position of chlorin exhibit ∼5-fold brighter fluorescence than corresponding chlorin monomers, upon excitation at 500 nm.
我们在此报告含二氢卟吩亚基的BODIPY - 二氢卟吩阵列的合成与表征,该阵列发射波长可调至深红区(641 - 685 nm),含有一个或两个BODIPY部分,在504 nm处有吸收。研究了两种类型的阵列:一种是BODIPY部分通过苯乙炔连接基连接在二氢卟吩的13 - 位或3,13 - 位;另一种是BODIPY通过酰胺连接基连接在二氢卟吩的10 - 位。所研究的每种阵列在甲苯和N,N - 二甲基甲酰胺中均表现出从BODIPY到二氢卟吩部分的高效(≥0.80)能量转移,并且在约500 nm激发BODIPY时表现出二氢卟吩的强烈荧光。因此,此类阵列中的有效斯托克斯位移在140 - 180 nm范围内。BODIPY连接在二氢卟吩10 - 位的二元体系在一系列不同极性的溶剂(即甲苯、甲醇、N,N - 二甲基甲酰胺和二甲基亚砜)中均表现出明亮的荧光。与此相反,一些BODIPY连接在二氢卟吩3 - 位或3,13 - 位的阵列在极性溶剂中荧光显著降低。总体而言,BODIPY连接在二氢卟吩10 - 位的二元体系在500 nm激发时,其荧光比相应的二氢卟吩单体亮约5倍。