Wu Bin, Wang Jianing, Liu Xingchen, Zhu Rong
Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education, College of Chemistry and Molecular Engineering, Peking University, Beijing, China.
Nat Commun. 2021 Jun 17;12(1):3680. doi: 10.1038/s41467-021-24054-3.
Here we report the design, preparation, synthetic utility, and sensing application of a class of proaromatic structures, namely bicyclo[2.2.0]hexene (BCH) derivatives. Building on a valence isomerism concept, they feature modular and easy synthesis as well as high thermal stability, and can be oxidatively activated under mild conditions. New alkyl transfer reactions using BCHs as a radical donor have been developed to showcase the utility of their proaromaticity. Moreover, the redox-triggered valence isomerization of a quinoline-derived BCH led to colorimetric and fluorescent responses toward vapors of electrophilic reagents in solution and solid phase, respectively. This optical response was shown to involve a 1,3-cyclohexadiene structure that possesses an intramolecular charge transfer excited state with interesting aggregation induced emission (AIE) character. Thus, the potential of BCHs has been demonstrated as a versatile platform for the development of new reagents and functional materials.
在此,我们报告了一类类芳香结构,即双环[2.2.0]己烯(BCH)衍生物的设计、制备、合成效用及传感应用。基于价键异构概念,它们具有模块化且易于合成以及高热稳定性的特点,并且能在温和条件下被氧化激活。已开发出以BCHs作为自由基供体的新型烷基转移反应,以展示其类芳香性的效用。此外,喹啉衍生的BCH的氧化还原触发价键异构分别导致在溶液和固相中对亲电试剂蒸气的比色和荧光响应。这种光学响应被证明涉及一种1,3 - 环己二烯结构,该结构具有分子内电荷转移激发态以及有趣的聚集诱导发光(AIE)特性。因此,已证明BCHs作为开发新试剂和功能材料的通用平台具有潜力。