Nitrogen-Embedded Quintuple [7]Helicene: A Helicene–Azacorannulene Hybrid with Strong Near-Infrared Fluorescence

螺旋烯 化学 荧光 光化学 吸收(声学) 结晶学 分子 有机化学 材料科学 光学 物理 复合材料
作者
Yin‐Fu Wu,Si‐Wei Ying,Liyun Su,Jun‐Jie Du,Ling Zhang,Bin‐Wen Chen,Han‐Rui Tian,Han Xu,Mei-Lin Zhang,Xiaomei Yan,Qianyan Zhang,Su‐Yuan Xie,Lan‐Sun Zheng
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:144 (24): 10736-10742 被引量:44
标识
DOI:10.1021/jacs.2c00794
摘要

Herein, a nitrogen-embedded quintuple [7]helicene (N-Q7H) with an azapentabenzocorannulene core, which can be considered to be a helicene/azacorannulene hybrid π-system, was synthesized from azapentabenzocorannulene in a three-step process. N-Q7H is the first example of a multiple helicene with an azabuckybowl core. Single-crystal X-ray diffractometry unambiguously confirmed the structure of the propeller-shaped hybrid π-system. Owing to nitrogen-atom doping in the multiple helicenes and effective hybridization between the helicene and azacorannulene, N-Q7H exhibits considerably redshifted absorption and emission (yellow-to-green color change and green-to-near-infrared fluorescence change) relative to the azapentabenzocorannulene core. The broad absorption from the ultraviolet-visible to the NIR region is ascribable to the allowed transition between the highest occupied molecular orbital and the lowest unoccupied molecular orbital after symmetry breaking, as revealed by density functional theory calculations. Compared to previous propeller-shaped multiple helicenes with corannulene or hexabenzocoronene (etc.) as cores, N-Q7H demonstrates a significantly higher NIR fluorescence quantum efficiency of 28%. Additionally, the chiral-resolution and redox properties of N-Q7H were investigated. The excellent photophysical and inherent chiral properties of N-Q7H suggest that azapentabenzocorannulene can be used as an outstanding nitrogen-embedded core to construct novel multiple helicenes with wide application potential, including as NIR fluorescent bio-probes.

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