天青
化学
区域选择性
芳基
亲核芳香族取代
位阻效应
组合化学
双环分子
萘
表面改性
芳香性
亲核细胞
模块化设计
计算化学
发色团
亲核加成
戒指(化学)
分子
偶极子
纳米技术
块(置换群论)
光化学
苯衍生物
化学空间
作者
Xiaoling Yuan,L L Zhang,Qingshuang Zhang,Hanxue Fu,M M Zuo,Junxiang Liu,Yuetian Wang,Li Li,Dachuan Qiu,Yang Li
摘要
Azulene, a nonbenzenoid aromatic isomer of naphthalene with exceptional optoelectronic properties, has long eluded general methods for selective functionalization, especially on its electron-deficient seven-membered ring. Here, we overcome this limitation by introducing the first practical precursors to azulyne intermediates. In stark contrast to well-established benzyne chemistry, the synthesis of these azulyne precursors is far from trivial, demanding tailored strategies to construct their bicyclic frameworks. Computations reveal that 5,6- and 4,5-azulyne possess substantial yet manageable ring strain and marked electrophilicity. Leveraging these versatile intermediates, we develop a modular platform that enables direct, efficient, and site-selective incorporation of diverse functionalities onto the azulene core through cycloadditions, nucleophilic additions, σ-bond insertions, and transition-metal-catalyzed reactions. This strategy grants unprecedented access to a wide range of polysubstituted azulenes and complex azulene-embedded polycyclic aromatic compounds (PACs), with regioselectivity governed by predictable steric and electronic principles. Our work transforms azulene from a synthetically challenging motif into a programmable building block based on this unique nonalternant architecture.
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