Guo Tenglong, Lin Yuting, Pan Deng, Zhang Xuedan, Zhu Wenqing, Cai Xu-Min, Huang Genping, Wang Hua, Xu Dezhu, Kühn Fritz E, Zhang Bo, Zhang Tao
CAS Key Laboratory of Science and Technology on Applied Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China.
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, International Innovation Center for Forest Chemicals and Materials, College of Chemical Engineering, Nanjing Forestry University, Nanjing, 210037, China.
Nat Commun. 2023 Sep 28;14(1):6076. doi: 10.1038/s41467-023-41681-0.
One-pot synthesis of heterocyclic aromatics with good optical properties from phenolic β-O-4 lignin segments is of high importance to meet high value added biorefinery demands. However, executing this process remains a huge challenge due to the incompatible reaction conditions of the depolymerization of lignin β-O-4 segments containing γ-OH functionalities and bioresource-based aggregation-induced emission luminogens (BioAIEgens) formation with the desired properties. In this work, benzannulation reactions starting from lignin β-O-4 moieties with 3-alkenylated indoles catalyzed by vanadium-based complexes have been successfully developed, affording a wide range of functionalized carbazoles with up to 92% yield. Experiments and density functional theory calculations suggest that the reaction pathway involves the selective cleavage of double C-O bonds/Diels-Alder cycloaddition/dehydrogenative aromatization. Photophysical investigations show that these carbazole products represent a class of BioAIEgens with twisted intramolecular charge transfer. Distinctions of emission behavior were revealed based on unique acceptor-donor-acceptor-type molecular conformations as well as molecular packings. This work features lignin β-O-4 motifs with γ-OH functionalities as renewable substrates, without the need to apply external oxidant/reductant systems. Here, we show a concise and sustainable route to functional carbazoles with AIE properties, building a bridge between lignin and BioAIE materials.
从酚类β-O-4木质素片段一锅法合成具有良好光学性质的杂环芳烃对于满足高附加值生物炼制需求具有重要意义。然而,由于含有γ-OH官能团的木质素β-O-4片段的解聚与具有所需性质的基于生物资源的聚集诱导发光发光体(BioAIEgens)形成的反应条件不相容,实施该过程仍然是一个巨大的挑战。在这项工作中,成功开发了以钒基配合物催化从木质素β-O-4部分与3-烯基化吲哚开始的苯并环化反应,得到了一系列官能化咔唑,产率高达92%。实验和密度泛函理论计算表明,反应途径涉及双C-O键的选择性裂解/狄尔斯-阿尔德环加成/脱氢芳构化。光物理研究表明,这些咔唑产物代表了一类具有扭曲分子内电荷转移的BioAIEgens。基于独特的受体-供体-受体型分子构象以及分子堆积揭示了发射行为的差异。这项工作以具有γ-OH官能团的木质素β-O-4基序作为可再生底物,无需应用外部氧化/还原系统。在此,我们展示了一条简洁且可持续的通往具有AIE性质的官能化咔唑的路线,在木质素和BioAIE材料之间架起了一座桥梁。