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蒽-硼二吡咯盒式结构:合成与能量转移

Anthracene-BODIPY cassettes: syntheses and energy transfer.

作者信息

Wan Chi-Wai, Burghart Armin, Chen Jiong, Bergström Fredrik, Johansson Lennart B-A, Wolford Matthew F, Kim Taeg Gyum, Topp Michael R, Hochstrasser Robin M, Burgess Kevin

机构信息

Chemistry Department, Texas A & M University, P.O. Box 30012, College Station, TX 77842, USA.

出版信息

Chemistry. 2003 Sep 22;9(18):4430-41. doi: 10.1002/chem.200304754.

Abstract

Compounds based on the 4,4-difluoro-1,3,5,7-tetramethyl-4-bora-3a,4a-diaza-s-indacene (BODIPY) framework are excellent fluorescent markers. When BODIPY dyes of this type are conjugated to functionalities that absorb at relatively short wavelengths, those functionalities can, in some molecules, transmit the absorbed energy to the BODIPY which then fluoresces. In such cases the BODIPY fragment acts as an acceptor while the other group serves as a donor. Energy transfer efficiencies in such donor-acceptor cassette systems must vary with the relative orientation of the two components, and with the structure of the linkers that attach them. This study was designed to probe these issues for the special case in which the linkers between the donor and acceptor fragments are conjugated. To do this, the cassettes 3-10 were prepared. Electrochemical studies were performed to provide insight into the degree of donor-acceptor conjugation in these systems. X-ray Crystallographic studies on single crystals of compounds 7 and 9 revealed the favored conformations of the donor and acceptor fragments in the solid state. Absorption, fluorescence, and time-resolved fluorescence spectra of the compounds were recorded, and quantum yields for the cassettes excited at the donor lambda(max) were measured. Fluorescence steady-state anisotropy data were determined for cassettes 3 and 9 to provide information about the mutual direction of the transition dipole moments.

摘要

基于4,4-二氟-1,3,5,7-四甲基-4-硼-3a,4a-二氮杂-s-茚(BODIPY)骨架的化合物是出色的荧光标记物。当此类BODIPY染料与在相对较短波长处吸收的官能团共轭时,在某些分子中,这些官能团可将吸收的能量传递给BODIPY,然后BODIPY发出荧光。在这种情况下,BODIPY片段充当受体,而另一基团充当供体。在这种供体-受体盒式系统中,能量转移效率必定会随两个组分的相对取向以及连接它们的接头结构而变化。本研究旨在针对供体和受体片段之间的接头共轭的特殊情况探究这些问题。为此,制备了盒式化合物3-10。进行了电化学研究,以深入了解这些系统中供体-受体共轭的程度。对化合物7和9的单晶进行X射线晶体学研究,揭示了固态下供体和受体片段的有利构象。记录了化合物的吸收光谱、荧光光谱和时间分辨荧光光谱,并测量了在供体λ(max)处激发的盒式化合物的量子产率。测定了盒式化合物3和9的荧光稳态各向异性数据,以提供有关跃迁偶极矩相互方向的信息。

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