Wang Yanpei, Huang Yulin, Huang Tingting, Zhang Jun, Luo Teng, Ni Yong, Li Bo, Xie Sheng, Zeng Zebing
State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha, 410082, P. R. China.
Shenzhen Research Institute of Hunan University, Shenzhen, 518000, P. R. China.
Angew Chem Int Ed Engl. 2022 May 16;61(21):e202200855. doi: 10.1002/anie.202200855. Epub 2022 Mar 23.
Here we report stepwise solution-synthesis of linear nonalternant nanoribbons (NNRs), featuring pentagonal rings peri-fused onto the repeating perylene unit. The X-ray single-crystal structures demonstrated their π-backbones as a twisted ribbon, with the longest crystalline length of the nanoribbon up to 3.9 nm. NNRs exhibited an orange to deep-red photoluminescence even under the room light, with absolute Φ up to 82 %, most likely due to ring-strain induced molecular stiffness. Benefiting from the enlarged size and the antiaromatic character of pentagons, all of NNRs possessed ambipolar redox properties, especially for longer nanoribbons showing multiple reversible reductions and oxidations. In addition, experimental and theoretical results indicated a ground state open-shell singlet diradicaloid for the dication of longer NNRs. Our studies reveal the intriguing nonalternant structures and physical properties of this type of nanoribbons, involving the striking effects of the multiple annulated pentagons, and also provide fundamental insights into their electronic structures.
在此,我们报告了线性非交替纳米带(NNRs)的逐步溶液合成方法,其特征在于在重复的苝单元上有五元环周边稠合。X射线单晶结构表明它们的π骨架为扭曲的带状,纳米带的最长晶体长度可达3.9 nm。即使在室内光线下,NNRs也表现出从橙色到深红色的光致发光,绝对荧光量子产率高达82%,这很可能是由于环应变诱导的分子刚性。受益于五边形增大的尺寸和反芳香特性,所有NNRs都具有双极性氧化还原性质,特别是对于较长的纳米带,显示出多个可逆的还原和氧化过程。此外,实验和理论结果表明,较长NNRs的二价阳离子具有基态开壳单重双自由基特征。我们的研究揭示了这类纳米带有趣的非交替结构和物理性质,包括多个稠合五边形的显著影响,也为它们的电子结构提供了基本见解。