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通过电荷转移调节基于对称芘的凝胶剂的有机凝胶化和光谱性质。

Tuning the Organogelating and Spectroscopic Properties of a C -Symmetric Pyrene-Based Gelator through Charge Transfer.

作者信息

Gainar Adrian, Lai Thanh-Loan, Oliveras-González Cristina, Pop Flavia, Raynal Matthieu, Isare Benjamin, Bouteiller Laurent, Linares Mathieu, Canevet David, Avarvari Narcis, Sallé Marc

机构信息

CNRS, Institut Parisien de Chimie Moléculaire, Equipe Chimie des Polymères, Sorbonne Université, 4 Place Jussieu, 75005, Paris, France.

Laboratoire MOLTECH-Anjou, UNIV. Angers, UMR CNRS 6200, SFR MATRIX, 2 Bd Lavoisier, 49045, Angers Cedex, France.

出版信息

Chemistry. 2021 Feb 1;27(7):2410-2420. doi: 10.1002/chem.202003914. Epub 2020 Dec 30.

Abstract

Two-component organogels and xerogels based on a C -symmetric pyrene-containing gelator have been deeply characterized through a wide range of techniques. Based on the formation of charge transfer complexes, the gelation phenomenon proved to be highly dependent on the nature of the electron poor dopant. This parameter significantly influenced the corresponding gelation domains, the critical gelation concentrations of acceptor dopants, the gel-to-sol transition temperatures, the microstructures formed in the xerogel state and their spectroscopic properties. In particular, titrations and variable-temperature UV-visible absorption spectroscopy demonstrated the key role of donor-acceptor interactions with a remarkable correlation between the phase transition temperatures and the disappearance of the characteristic charge transfer bands. The assignment of these electronic transitions was confirmed through time-dependent density functional theory (TD-DFT) calculations. Eventually, it was shown that the luminescent properties of these materials can be tuned with the temperature, either in intensity or emission wavelength.

摘要

基于含对称芘凝胶因子的双组分有机凝胶和干凝胶已通过多种技术进行了深入表征。基于电荷转移络合物的形成,凝胶化现象被证明高度依赖于缺电子掺杂剂的性质。该参数显著影响相应的凝胶化区域、受体掺杂剂的临界凝胶化浓度、凝胶-溶胶转变温度、干凝胶状态下形成的微观结构及其光谱性质。特别是,滴定法和变温紫外-可见吸收光谱表明了供体-受体相互作用的关键作用,相变温度与特征电荷转移带的消失之间存在显著相关性。通过含时密度泛函理论(TD-DFT)计算证实了这些电子跃迁的归属。最终结果表明,这些材料的发光性质可以随温度在强度或发射波长方面进行调节。

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