Pan Saifei, Liu Weidong, Tang Jiantao, Yang Yingjie, Feng Hui, Qian Zhaosheng, Zhou Jin
College of Chemistry and Life Science, Zhejiang Normal University, Jinhua 321004, People's Republic of China.
J Mater Chem B. 2018 Jun 21;6(23):3927-3933. doi: 10.1039/c8tb00463c. Epub 2018 May 29.
Distinctive aggregation-induced emission (AIE) phenomenon of thiolate-protected silver nanoclusters (AgNCs) has been revealed; these AgNCs have shown great potential for exploitation and utilization, but their applications as a bright luminogen in the chemosensing and bioimaging areas are greatly limited by their ultralow brightness in an aqueous solution. Herein, we report facile fabrication of hydrophobicity-guided self-assembled particles of silver nanoclusters with aggregation-induced emission. A hydrophobic ligand, thiosalicylic acid, was adopted to prepare AgNCs via a one-step way, and thiosalicylic acid-capped AgNCs showed significant AIE behavior. This AIE property of AgNCs enables them to selectively respond to multiple external stimuli such as solvent polarity, pH and environmental temperature. The hydrophobic nature of thiosalicylic acid as capping ligands of AgNCs drives a self-assembly process of AgNCs in an aqueous solution that results in the formation of self-assembled particles of AgNCs with bright luminescence. Sensitive detection of mercuric ion based on the highly luminescent AgNC AIE particles was achieved in terms of a strong quenching effect of mercuric ion. Cellular viability and luminescence imaging performance of the AgNC AIE particles on living cells were also evaluated for the first time. This study demonstrates the fabrication of AIE particles of silver nanoclusters with bright luminescence guided by hydrophobic interaction and reveals excellent bioimaging performance of AIE particles in living cells.
已揭示了硫醇盐保护的银纳米团簇(AgNCs)独特的聚集诱导发光(AIE)现象;这些AgNCs已显示出巨大的开发和利用潜力,但其作为化学传感和生物成像领域中明亮发光体的应用受到其在水溶液中极低亮度的极大限制。在此,我们报道了通过疏水作用引导自组装制备具有聚集诱导发光的银纳米团簇颗粒。采用疏水性配体硫代水杨酸通过一步法制备AgNCs,且硫代水杨酸封端的AgNCs表现出显著的AIE行为。AgNCs的这种AIE性质使其能够选择性地响应多种外部刺激,如溶剂极性、pH值和环境温度。硫代水杨酸作为AgNCs的封端配体的疏水性驱动了AgNCs在水溶液中的自组装过程,从而导致形成具有明亮发光的AgNCs自组装颗粒。基于高发光性的AgNC AIE颗粒实现了对汞离子的灵敏检测,这是由于汞离子具有强烈淬灭效应。还首次评估了AgNC AIE颗粒在活细胞上的细胞活力和发光成像性能。本研究展示了通过疏水相互作用引导制备具有明亮发光的银纳米团簇AIE颗粒,并揭示了AIE颗粒在活细胞中优异的生物成像性能。