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高度取代的 Bodipy 染料具有对环境敏感的光谱特性。

Highly substituted Bodipy dyes with spectroscopic features sensitive to the environment.

机构信息

Laboratoire de Chimie Moléculaire et Spectroscopies Avancées (LCOSA), ECPM, CNRS, 25 rue Becquerel, 67087 Strasbourg Cedex 02, France.

出版信息

J Org Chem. 2011 Feb 18;76(4):1109-17. doi: 10.1021/jo102203f. Epub 2011 Jan 18.

DOI:10.1021/jo102203f
PMID:21244077
Abstract

A general method for the synthesis of butterfly-shaped difluoroboradiaza-s-indacenes with different substituents has been developed. The mixed AB dye was produced in two successive Knoevenagel reactions involving first 4-dimethylaminobenzaldehyde and second 4-hydroxybenzaldehyde. Two pathways to A(2)B(2) and ABCD derivatives were investigated starting from a tetramethyl-substituted Bodipy. The pivotal compound is a bis-styryl phenol derivative also produced by a Knoevenagel reaction without the need to protect the phenol functions. Methylation of the phenol functions provides mono- and bis-derivatives which have been used to construct tetrastyryl A(2)B(2) and ABCD derivatives, respectively. Stepwise alkylation of the monomethoxyphenol dye provided a mixed dye that was converted to a tris-substituted compound, isolated as a mixture of regioisomers. The fourth styryl function was introduced by using 4-dimethylaminobenzaldehyde and forcing conditions. These highly colored dyes display outstanding optical properties with absorption wavelengths spanning from 573 to 718 nm and emission wavelengths from 585 to 800 nm. The high quantum yields, nanosecond excited state lifetimes, and weak Stokes shifts are typical of singlet emitters. The presence of both dimethylamino and phenol residues in some of these dyes makes them sensitive to acids and bases, allowing the tuning of the optical properties over a large wavelength range as a function of pH. A unique three-color ratiometric pH sensor based on both absorption and fluorescence has been characterized and studied in detail. The tris- and tetra-substitution of the methyl groups by vinyl residues induces a weaker bathochromic shift than that due to mono- and disubstitution. Consequently, replacing an alkoxy function by a dimethylamino moiety in the tetra-substituted derivatives has little effect on the spectroscopic features.

摘要

一种用于合成具有不同取代基的蝶形二氟硼氮杂-s-茚并的通用方法已经开发出来。混合 AB 染料是通过两个连续的 Knoevenagel 反应产生的,第一个反应涉及 4-二甲氨基苯甲醛,第二个反应涉及 4-羟基苯甲醛。从四甲基取代的 Bodipy 开始,研究了两种途径来合成 A(2)B(2)和 ABCD 衍生物。关键化合物是一种双苯乙烯基酚衍生物,也可以通过 Knoevenagel 反应得到,而无需保护酚基。酚基的甲基化提供了单和双衍生物,它们分别用于构建四苯乙烯基 A(2)B(2)和 ABCD 衍生物。单甲氧基苯酚染料的逐步烷基化提供了一种混合染料,该染料被转化为三取代化合物,作为区域异构体的混合物分离。第四个苯乙烯基功能是通过使用 4-二甲氨基苯甲醛和强制条件引入的。这些高色染料具有出色的光学性质,吸收波长范围为 573 至 718nm,发射波长范围为 585 至 800nm。高量子产率、纳秒激发态寿命和弱斯托克斯位移是单重态发射器的典型特征。这些染料中的一些同时含有二甲氨基和酚基残基,使它们对酸和碱敏感,允许根据 pH 值在很大的波长范围内调谐光学性质。已经对一种基于吸收和荧光的独特的三颜色比率 pH 传感器进行了表征和详细研究。甲基通过乙烯基残基的三取代和四取代比单取代和二取代诱导的红移较弱。因此,在四取代衍生物中,用二甲氨基取代烷氧基官能团对光谱特征几乎没有影响。

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