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卤素键调控的氮杂蒄的固态重排与对称性破缺

Halogen bond-modulated solid-state reordering and symmetry breaking of azahelicenes.

作者信息

Liang Juncong, Gan Fuwei, Zhang Guoli, Shen Chengshuo, Qiu Huibin

机构信息

School of Chemistry and Chemical Engineering, State Key Laboratory of Synergistic Chem-Bio Synthesis, Frontiers Science Center for Transformative Molecules, Zhangjiang Institute for Advanced Study, State Key Laboratory of Micro-Nano Engineering Science, Shanghai Jiao Tong University, Shanghai, China.

School of Chemistry and Chemical Engineering, Zhejiang Sci-Tech University, Hangzhou, China.

出版信息

Nat Commun. 2025 Apr 22;16(1):3788. doi: 10.1038/s41467-025-59222-2.

Abstract

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.

摘要

自发对称性破缺主要发生在溶液中离散分子的聚集过程中。在此,我们报道了一种独特的动态手性氮杂[4]螺旋烯的固态对称性破缺过程,该过程出现在卤键编织晶体的真空驱动转变中。由于卤键的弱相互作用特性,共晶体中的卤化物在高温真空下可被完全去除。有趣的是,从卤键网络中释放出的氮杂[4]螺旋烯分子在重新排列时仅采用一种手性构象,并且在固态中立即发生对称性破缺。随着真空热处理时间的延长,科顿效应逐渐增强,这表明在手性构象的单向转变以及固态重组过程中对称性破缺的放大。此外,使用氮杂[6]螺旋烯作为手性诱导剂进一步能够对手性固态对称性破缺的绝对构型进行精确调控,为从非手性/外消旋前体合成手性有机材料开辟了一条独特的途径。

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