Pathway complexity in aqueous J-aggregation of an ionic BODIPY amphiphile†

IF 2.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY New Journal of Chemistry Pub Date : 2024-07-26 DOI:10.1039/D4NJ02948H
Houchen Wang, Jiajun Liu, Hongfei Pan and Zhijian Chen
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Abstract

A new amphiphilic boron-dipyrromethene (BODIPY) dye bearing a hydrophobic 2,3,4-tris(n-dodecyloxy) phenyl group at the meso-position and two hydrophilic cationic moieties at the boron was synthesized. This dye exhibited kinetically controlled and thermodynamically controlled aggregation pathways in aqueous solution, leading to the formation of two types of J-aggregates, i.e., the metastable Agg. I and thermodynamically more stable Agg. II. Further kinetic analysis of the spontaneous transformation from Agg. I to Agg. II indicated that Agg. I was an off-pathway aggregate species. Moreover, both Agg. I and Agg. II displayed J-aggregate characteristics with enhanced fluorescence quantum yields and shortened fluorescence lifetime with respect to that of the monomeric dye. In particular, Agg. II exhibited a narrowed and intense J-band, reflecting the strong excitonic coherence in the aggregate. Morphological studies revealed that Agg. I consisted of spherical nanoparticles, while Agg. II had a multilamellar vesicular structure. In addition, in the fluorescence spectra of Agg. I and Agg. II, an unexpected broad band at longer wavelength than that of the J-aggregate emission was observed, which could be ascribed to the possible formation of excimers in these J-aggregates in aqueous solution.

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离子型 BODIPY 双亲化合物在水溶液中 J-聚合过程的复杂性
我们合成了一种新的两亲性硼-二吡咯并二甲苯(BODIPY)染料,它的中位含有一个疏水的 2,3,4- 三(正十二烷氧基)苯基,硼位含有两个亲水的阳离子分子。这种染料在水溶液中表现出动力学控制和热力学控制的聚集途径,从而形成两种类型的 J-聚集体,即易变的 Agg.I 和热力学上更稳定的 Agg.II。从 Agg.I 到 Agg.II 的自发转化动力学分析表明,Agg.I 是一种非通路聚合物种。此外,Agg.I 和 Agg.I 和 Agg. II 都显示出 J-聚集体的特征,与单体染料相比,它们的荧光量子产率提高,荧光寿命缩短。特别是 Agg.II 显示出窄而密集的 J 波段,这反映了聚合体中强的激子相干性。形态学研究表明,Agg.I 是球形纳米颗粒,而 Agg.II 则呈多胶束泡状结构。此外,在 Agg.I 和 Agg.此外,在 Agg.I 和 Agg.II 的荧光光谱中,还观察到了一个意想不到的宽波段,其波长长于 J-聚集体的发射波长,这可能是由于这些 J-聚集体在水溶液中可能形成了激发子。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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