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源自7,8,9,10-苊二亚胺的非交替苯并二氟苊四亚胺:合成、结构及光限幅性能

Non-alternant Benzodifluoranthene Tetraimides from 7,8,9,10-Fluoranthene Diimides: Synthesis, Structure, and Optical-Limiting Properties.

作者信息

Qin Hanwen, Zhao Lingli, Zheng Liping, Ma Zhipeng, Liao Miaoli, Sun Jibin, Sun Chenghua, Chen Huajie

机构信息

Key Laboratory of Environmentally Friendly Chemistry and Applications of Ministry of Education, College of Chemistry, Xiangtan University, Xiangtan, 411105, P. R. China.

Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

出版信息

Chemistry. 2025 Jan 14;31(3):e202403332. doi: 10.1002/chem.202403332. Epub 2024 Nov 19.

Abstract

A novel tetraimide-functionalized non-alternant π-conjugated system, namely, benzodifluoranthene tetraimides (BDFTI), has been designed and synthesized through highly efficient UV-photocyclization of a vinyl-bridged fluoranthene diimide dimer (i. e., FDI-V). The synthesis of FDI-V starts from a straightforward three-step route to produce novel 7,8,9,10-fluoranthene diimide (FDIs) building-blocks, followed by nearly complete bromination and then Stille-coupling reaction to give the desired dimer. The analysis by X-ray crystallography confirms a near-coplanar geometry for FDIs, while BDFTI shows a U-shaped and distorted backbone configuration proven by theoretical optimizations. The tetraimide BDFTI exhibits several advantages over the FDI cores, including an extended absorption band and a red-shift in photoluminescence spectra. This enhancement can be attributed to the presence of additional electron-deficient imide units, which promotes increased intramolecular charge transfer and improved electron affinity. All the imides show a local aromatic characteristic owing to the incorporation of pentagon rings in the π-frameworks. The fully fused BDFTI exhibits nonlinear optical properties as analyzed by the open-aperture Z-scan technique, demonstrating superior optical-limiting performance compared to vinyl-bridged FDI-V. The versatile UV-photocyclization chemistries provide a pathway for developing complex and unique multiimide-functionalized π-conjugated systems, paving the way for creating high-performance optical-limiting materials.

摘要

一种新型的四酰亚胺官能化非交替π共轭体系,即苯并二氟蒽四酰亚胺(BDFTI),已通过乙烯基桥连的荧蒽二酰亚胺二聚体(即FDI-V)的高效紫外光环化反应设计并合成。FDI-V的合成始于一条直接的三步路线,以制备新型的7,8,9,10-荧蒽二酰亚胺(FDIs)结构单元,随后进行近乎完全的溴化反应,然后通过Stille偶联反应得到所需的二聚体。X射线晶体学分析证实了FDIs具有近乎共面的几何结构,而BDFTI显示出U形且扭曲的主链构型,这已通过理论优化得到证明。与FDI核相比,四酰亚胺BDFTI具有几个优点,包括扩展的吸收带和光致发光光谱的红移。这种增强可归因于额外的缺电子酰亚胺单元的存在,这促进了分子内电荷转移的增加和电子亲和力的提高。由于在π骨架中引入了五边形环,所有酰亚胺都表现出局部芳香特性。通过开孔Z扫描技术分析表明,完全稠合的BDFTI具有非线性光学性质,与乙烯基桥连的FDI-V相比,表现出优异的光限幅性能。通用的紫外光环化化学为开发复杂且独特的多酰亚胺官能化π共轭体系提供了一条途径,为制备高性能光限幅材料铺平了道路。

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