Lee Eung-Chang, Kim Hyeong-Ju, Park Soo Young
Laboratory for Supramolecular Optoelectronic Materials, Department of Materials Science and Engineering, Seoul National University, ENG 445, Seoul, 08826, Korea.
Chem Asian J. 2019 May 2;14(9):1457-1461. doi: 10.1002/asia.201900204. Epub 2019 Apr 5.
We demonstrate a reversible shape-morphing with concurrent fluorescence switching in the nanomaterials which are complexed with cucurbit[7]uril (CB[7]) in water. The cyanostilbene derivative alone forms ribbon-like two-dimensional (2D) nanocrystals with bright yellow excimeric emission in water (λ =540 nm, Φ =42 %). Upon CB[7] addition, however, the ribbon-like 2D nanocrystals immediately transform to spherical nanoparticles with significant fluorescence quenching and blue-shifting (λ =490 nm, Φ =1 %) through the supramolecular complexation of the cyanostilbene and CB[7]. Based on this reversible fluorescence switching and shape morphing, we could demonstrate a novel strategy of turn-on fluorescence sensing of spermine and also monitoring of lysine decarboxylase activity.
我们展示了在水中与葫芦[7]脲(CB[7])复合的纳米材料中,同时发生荧光切换的可逆形状变形。仅氰基芪衍生物在水中形成具有亮黄色准分子发射的带状二维(2D)纳米晶体(λ = 540 nm,Φ = 42 %)。然而,加入CB[7]后,带状二维纳米晶体通过氰基芪与CB[7]的超分子络合立即转变为球形纳米颗粒,伴随着显著的荧光猝灭和蓝移(λ = 490 nm,Φ = 1 %)。基于这种可逆的荧光切换和形状变形,我们可以展示一种用于精胺的开启式荧光传感以及赖氨酸脱羧酶活性监测的新策略。