化学
部分
联氨(抗抑郁剂)
氧化还原
发光
化学机械平面化
碳纤维
吸收(声学)
苯并菲
光化学
抗芳香性
结晶学
纳米技术
电化学
氮气
戒指(化学)
绿灯
作者
Yang-Yang Ju,Jiang-feng Xing,Yu-ming XIE,Xiao-Fei Li,Xin-Jing Zhao,Guo-Hui Nie,Bin Zhang,Yuan‐Zhi Tan
摘要
Embedding hydrazine into graphenic networks, where two graphitic nitrogen atoms are directly linked by an N-N bond, endows unique redox activity and antiaromatic character, yet the construction of such fully fused architectures has remained a synthetic challenge. Here we report the first fully fused hydrazine-embedded nanographene (1) synthesized via a dehydrocyclization strategy. Single-crystal X-ray diffraction revealed a hydrazine moiety embedded within a fused polycyclic carbon framework measuring 1.4 nm diagonally with a helical saddle-shape. This π-extended architecture displays near-infrared (NIR) absorption (830 nm) and emission (879 nm, ΦF = 6.5%), as well as multistep redox processes accompanied by oxidation-induced planarization and an antiaromatic-to-aromatic transition. Chiral resolution further uncovered circularly polarized luminescence extending beyond 850 nm, which is observed for the first time from a helical nanographene. This study demonstrates that hydrazine embedment can be exploited to construct atomically precise nanocarbons with distinctive redox and NIR optical functions.
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