Li Xiaopei, Wang Dongdong, Zhang Yongjie, Lu Wenqi, Yang Songqiu, Hou Guangjin, Zhao Zhenchao, Qin Haijuan, Zhang Yahui, Li Minmin, Qing Guangyan
CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences Dalian 116023 P. R. China
Instrumental Analysis Center, Dalian Polytechnic University Dalian 116034 P. R. China.
Chem Sci. 2021 Aug 18;12(37):12437-12444. doi: 10.1039/d1sc03765j. eCollection 2021 Sep 29.
Aggregation-induced enhanced emission (AIEE) molecules have significant applications in optoelectronics, biomedical probes and chemical sensors, and large amounts of AIEE molecules have been reported since the concept of AIEE was proposed. Most aromatic AIEE molecules have complex structures consisting of multiple aromatic rings and/or polycyclic skeletons. In this study, we find that 2-aminophenylboronic acid (2-APBA) with a simple structure is highly emissive in the solid state. Further studies reveal that 2-APBA exists in a dimeric form, and the 2-APBA dimer is a novel AIEE molecule. The underlying AIEE mechanism is that the 2-APBA dimeric units aggregate through intermolecular interactions to produce highly ordered molecular packing without the presence of π-π stacking interactions that would lead to aggregation-caused quenching. Furthermore, the 2-APBA dimer aggregates could reversibly transform into its non-fluorescent monomer form driven by new kinds of dynamic covalent B-N and B-O bonds, illustrating its good potential in molecular recognition, nanogating, chemo/bio-sensing and controlled drug release.
聚集诱导增强发射(AIEE)分子在光电子学、生物医学探针和化学传感器方面有重要应用,自AIEE概念提出以来,已报道了大量的AIEE分子。大多数芳香族AIEE分子具有由多个芳香环和/或多环骨架组成的复杂结构。在本研究中,我们发现结构简单的2-氨基苯硼酸(2-APBA)在固态下具有高发射性。进一步研究表明,2-APBA以二聚体形式存在,且2-APBA二聚体是一种新型AIEE分子。潜在的AIEE机制是,2-APBA二聚体单元通过分子间相互作用聚集,形成高度有序的分子堆积,而不存在会导致聚集猝灭的π-π堆积相互作用。此外,在新型动态共价B-N和B-O键的驱动下,2-APBA二聚体聚集体可可逆地转变为其非荧光单体形式,这表明其在分子识别、纳米门控、化学/生物传感和可控药物释放方面具有良好的潜力。