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含氮杂环庚三烯的非交替B,N-嵌入螺旋纳米石墨烯:可编程合成、响应性手性光学性质及自发拆分形成单 handed 螺旋

Nonalternant B,N-Embedded Helical Nanographenes Containing Azepines: Programmable Synthesis, Responsive Chiroptical Properties and Spontaneous Resolution into a Single-Handed Helix.

作者信息

Zhuang Weiwen, Hung Faan-Fung, Che Chi-Ming, Liu Junzhi

机构信息

State Key Laboratory of Synthetic Chemistry, HKU-CAS Joint Laboratory on New Materials and Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, 999077, P.R. China.

Materials Innovation Institute for Life Sciences and Energy (MILES), HKU-SIRI, Shenzhen, 518005, P.R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Oct 14;63(42):e202406497. doi: 10.1002/anie.202406497. Epub 2024 Sep 12.

Abstract

Heteroatom-embedded helical nanographenes (NGs) constitute an important and appealing class of intrinsically chiral materials. In this work, a series of B,N-embedded helical NGs (BN-HNGs) bearing azepines was synthesized via stepwise regioselective cyclodehydrogenation. First, the phenyl- or nitrogen-bridged dimers were efficiently clipped into highly congested model compounds 1 and 2. Later, the controllable Scholl reactions of the tetraphenyl-tethered precursor generated 1, 7 or 8 new C-C bonds, thereby establishing a robust method for the preparation of nonalternant BN-HNGs with up to 31 fused rings. The helical bilayer nature was unambiguously verified by X-ray diffraction analysis. The helical chirality was transferred to the stereogenic boron centers upon fluoride coordination, with a concave-concave structure to comply with the bilayer skeleton. Notably, the largest nonalternant BN-HNG (6) spontaneously resolved into a homochiral 4 helix structure as a molecular spiral staircase during crystallization via conglomerate formation at the single-crystal scale. The large twisted C-symmetric π-surface and the dynamic chiral skeleton induced by curved azepines might have synergistic effects on self-recognition of enantiomers of 6 to achieve the intriguing spontaneous resolution behavior. The chiroptical properties of the enantiomer of 6 were further investigated, revealing that 6 had a strong chiroptical response in the visible range (400-700 nm).

摘要

杂原子嵌入的螺旋纳米石墨烯(NGs)是一类重要且引人注目的本征手性材料。在这项工作中,通过逐步区域选择性环脱氢反应合成了一系列带有氮杂卓的B,N嵌入螺旋纳米石墨烯(BN - HNGs)。首先,将苯基或氮桥连的二聚体有效地剪裁成高度拥挤的模型化合物1和2。随后,四苯基连接的前体的可控肖尔反应生成了1、7或8个新的C - C键,从而建立了一种制备具有多达31个稠环的非交替BN - HNGs的稳健方法。通过X射线衍射分析明确验证了螺旋双层性质。在氟化物配位时,螺旋手性转移到立体化学硼中心,形成凹 - 凹结构以符合双层骨架。值得注意的是,最大的非交替BN - HNG(6)在单晶尺度上通过聚集体形成结晶过程中自发解析为同手性的4螺旋结构,作为分子螺旋楼梯。由弯曲氮杂卓诱导的大扭曲C对称π表面和动态手性骨架可能对6的对映体的自识别具有协同作用,以实现有趣的自发解析行为。进一步研究了6的对映体的手性光学性质,发现6在可见光范围(400 - 700 nm)具有强烈的手性光学响应。

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