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具有纯n电子的含哌嗪非常规发光超支化聚硅氧烷

Nonconventional Luminescent Piperazine-Containing Hyperbranched Polysiloxanes with Pure n-electron.

作者信息

Du Yuqun, Liu Yiwei, Li Jangwei, He Yanyun, Li Yanbin, Yan Hongxia

机构信息

School of Chemistry and Chemical Engineering, North University of China, Taiyuan, Shanxi, 030051, China.

Key Laboratory of Special Functional and Smart Polymer Materials of Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xian, Shaanxi, 710129, China.

出版信息

Small. 2023 Oct;19(40):e2302095. doi: 10.1002/smll.202302095. Epub 2023 Jun 2.

DOI:10.1002/smll.202302095
PMID:37267933
Abstract

Nonconventional luminogens with high quantum yield (QY) possess very potential applications in various fields. However, the preparation of such luminogens remains a great challenge. Herein, the first example of piperazine-containing hyperbranched polysiloxane exhibiting blue and green fluorescence is reported under the irradiation of different excitation wavelength and a high QY of 20.9%. The density functional theory (DFT) calculations and experimental results revealed that the through-space conjugation (TSC) within the clusters of N and O atoms is produced via the induction of multiple intermolecular hydrogen bonds and flexible SiO units, which is accountable for the fluorescence. Meanwhile, the introduction of the rigid piperazine units not only rigidifies the conformation, but also enhances the TSC. In addition, the fluorescence of both P1 and P2 shows concentration-, excitation-, and solvent-dependent emission, especially exhibits significant pH-dependent emission and obtains an ultrahigh QY of 82.6% at pH 5. The synthetic luminogens show excellent applications in fluorescence detection for Fe and Co , information encryption, and fluorescent film. This study provides a novel strategy to rationally design high-efficiency nonconventional luminogens.

摘要

具有高量子产率(QY)的非常规发光体在各个领域具有非常潜在的应用。然而,此类发光体的制备仍然是一个巨大的挑战。在此,报道了首例含哌嗪的超支化聚硅氧烷在不同激发波长照射下呈现蓝色和绿色荧光,且量子产率高达20.9%。密度泛函理论(DFT)计算和实验结果表明,通过多个分子间氢键和柔性SiO单元的诱导,在N和O原子簇内产生了空间共轭(TSC),这是产生荧光的原因。同时,刚性哌嗪单元的引入不仅使构象刚性化,还增强了TSC。此外,P1和P2的荧光均表现出浓度、激发和溶剂依赖性发射,尤其表现出显著的pH依赖性发射,在pH 5时获得了82.6%的超高量子产率。合成的发光体在Fe和Co的荧光检测、信息加密和荧光薄膜方面显示出优异的应用。该研究为合理设计高效非常规发光体提供了一种新策略。

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