卤素
固态
对称性破坏
国家(计算机科学)
对称(几何)
化学物理
材料科学
化学
物理
计算机科学
工程物理
量子力学
有机化学
数学
算法
烷基
几何学
作者
Juncong Liang,Fuwei Gan,Guoli Zhang,Chengshuo Shen,Huibin Qiu
标识
DOI:10.1038/s41467-025-59222-2
摘要
Spontaneous symmetry breaking predominately occurs during the aggregation of discrete molecules in solution. Herein, we report a unique solid-state symmetry breaking process of dynamically chiral aza[4]helicenes that emerged in vacuum-driven transformation of halogen bond-woven crystals. Due to the weak feature of the halogen bonding, the halides in the cocrystals can be completely removed under vacuum at an elevated temperature. Interestingly, the aza[4]helicene molecules released from the halogen bond network solely adopt one chiral conformation upon reordering and symmetry breaking instantly occurs in a solid state. The Cotton effects gradually increase with the extension of vacuum-heating treatment, indicating a unidirectional transformation of the chiral conformations and an amplification of symmetry breaking during the solid-state reorganization. Moreover, the use of aza[6]helicene as a chiral inducer further enables a precise manipulation for the absolute configuration of the solid-state symmetry breaking, paving a distinctive route to chiral organic materials from achiral/racemic precursors.
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