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NPI-硼二吡咯二元体系中双发射及聚集诱导发射开关的微调

Fine-tuning dual emission and aggregation-induced emission switching in NPI-BODIPY dyads.

作者信息

Mukherjee Sanjoy, Thilagar Pakkirisamy

机构信息

Department of Inorganic & Physical Chemistry, Indian Institute of Science, Bangalore 560 012 (India), Fax:(+91) 802-360-1552.

出版信息

Chemistry. 2014 Jul 14;20(29):9052-62. doi: 10.1002/chem.201305049. Epub 2014 Jun 4.

DOI:10.1002/chem.201305049
PMID:24895089
Abstract

Three new NPI-BODIPY dyads 1-3 (NPI = 1,8-naphthalimide, BODIPY = boron-dipyrromethene) were synthesized, characterized, and studied. The NPI and BODIPY moieties in these dyads are electronically separated by oxoaryl bridges, and the compounds only differ structurally with respect to methyl substituents on the BODIPY fluorophore. The NPI and BODIPY moieties retain their optical features in molecular dyads 1-3. Dyads 1-3 show dual emission in solution originating from the two separate fluorescent units. The variations of the dual emission in these compounds are controlled by the structural flexibilities of the systems. Dyads 1-3, depending on their molecular flexibilities, show considerably different spectral shapes and dissimilar intensity ratios of the two emission bands. The dyads also show significant aggregation-induced emission switching (AIES) on formation of nano-aggregates in THF/H2O with changes in emission color from green to red. Whereas the flexible and aggregation-prone compound 1 shows AIES, rigid systems with less favorable intermolecular interactions (i.e., 2 and 3) show aggregation-induced quenching of emission. Correlations of the emission intensity and structural flexibility were found to be reversed in solution and aggregated states. Photophysical and structural investigations suggested that intermolecular interactions (e.g., π-π stacking) play a major role in controlling the emission of these compounds in the aggregated state.

摘要

合成、表征并研究了三种新型的NPI-BODIPY二元化合物1-3(NPI = 1,8-萘二甲酰亚胺,BODIPY = 硼二吡咯亚甲基)。这些二元化合物中的NPI和BODIPY部分通过氧芳基桥在电子上分离,并且这些化合物仅在BODIPY荧光团上的甲基取代基方面在结构上有所不同。NPI和BODIPY部分在分子二元化合物1-3中保留了它们的光学特性。二元化合物1-3在溶液中表现出源于两个独立荧光单元的双重发射。这些化合物中双重发射的变化由体系的结构灵活性控制。二元化合物1-3根据其分子灵活性,表现出显著不同的光谱形状和两个发射带的不同强度比。这些二元化合物在THF/H2O中形成纳米聚集体时还表现出显著的聚集诱导发射开关(AIES),发射颜色从绿色变为红色。易弯曲且易于聚集的化合物1表现出AIES,而分子间相互作用不太有利的刚性体系(即2和3)则表现出聚集诱导的发射猝灭。发现在溶液态和聚集态中发射强度与结构灵活性的相关性是相反的。光物理和结构研究表明,分子间相互作用(例如π-π堆积)在控制这些化合物在聚集态下的发射中起主要作用。

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