College of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, People's Republic of China.
Nanotechnology. 2013 Aug 23;24(33):335502. doi: 10.1088/0957-4484/24/33/335502. Epub 2013 Jul 26.
Sulfide anions are generated not only as a byproduct from industrial processes but also in biosystems. Hence, robust fluorescent sensors for detecting sulfide anions which are fast-responding, water soluble and biocompatible are highly desirable. Herein, we report a carbon-dot-based fluorescent sensor, which features excellent water solubility, low cytotoxicity and a short response time. This sensor is based on the ligand/Cu(II) approach so as to achieve fast sensing of sulfide anions. The carbon dot (CD) serves as the fluorophore as well as the anchoring site for the ligands which bind with copper ions. For this CD-based system, as copper ions bind with the ligands which reside on the surface of the CD, the paramagnetic copper ions efficiently quench the fluorescence of the CD, affording the system a turn-off sensor for copper ions. More importantly, the subsequently added sulfide anions can extract Cu(2+) from the system and form very stable CuS with Cu(2+), resulting in fluorescence enhancement and affording the system a turn-on sensor for sulfide anions. This fast-responding and selective sensor can operate in totally aqueous solution or in physiological milieu with a low detection limit of 0.78 μM. It displays good biocompatibility, and excellent cell membrane permeability, and can be used to monitor S(2-) levels in running water and living cells.
硫离子不仅作为工业过程的副产物产生,而且在生物系统中也会产生。因此,迫切需要开发对硫离子具有快速响应、水溶性好和生物相容性的鲁棒荧光传感器。在此,我们报告了一种基于碳点的荧光传感器,其具有出色的水溶性、低细胞毒性和较短的响应时间。该传感器基于配体/Cu(II)方法,从而实现对硫离子的快速检测。碳点 (CD) 既是荧光团,也是与铜离子结合的配体的锚定位点。对于这个基于 CD 的系统,由于铜离子与 CD 表面的配体结合,顺磁铜离子有效地猝灭了 CD 的荧光,使该系统成为铜离子的关闭型传感器。更重要的是,随后添加的硫离子可以从系统中提取 Cu(2+)并与 Cu(2+)形成非常稳定的 CuS,从而导致荧光增强,使该系统成为硫离子的开启型传感器。这种快速响应和选择性传感器可以在完全水溶液或生理环境中运行,检测限低至 0.78 μM。它具有良好的生物相容性和优异的细胞膜通透性,可用于监测自来水中和活细胞中的 S(2-)水平。