Nguyen Dao M, Frazer Andrew, Rodriguez Luis, Belfield Kevin D
Department of Chemistry, College of Optics and Photonics, University of Central Florida, 4000 Central Florida Parkway, Orlando, FL 32816 USA.
Chem Mater. 2010 Jun 8;22(11):3472-3481. doi: 10.1021/cm100599g.
The ability to rapidly detect biologically and environmentally significant metal ions such as zinc and mercury is important to study a number of important cellular and environmental processes. Hydrophilic bis(1,2,3-triazolyl)fluorene-based derivatives, containing a 1,2,3-triazole-based recognition moiety, were synthesized through Click chemistry and characterized by UV-vis absorption, fluorescence emission, and two-photon absorption as new fluorescence sensing probes, selective for Zn(2+) and Hg(2+) ions. The UV-vis absorption and fluorescence emission spectra of the complexes exhibited blue-shifted absorption and emission spectra upon chelation to Zn(2+) and Hg(2+) ions, resulting in ca. two-fold enhancement in fluorescence. Fluorometric titration revealed that 1:2 and 1:3 ligand to metal complexes formed with binding constants of 10(8) and 10(16) for Zn(2+) and Hg(2+), respectively. The two-photon absorption cross sections for the probes and probe-metal ion complexes ranged from 200-350 GM at 800 nm. These novel fluorescent compounds may have potential as new metal ion sensors to probe cellular and biological environments.
快速检测锌和汞等具有生物学和环境意义的金属离子的能力对于研究许多重要的细胞和环境过程至关重要。通过点击化学合成了含有基于1,2,3 - 三唑识别部分的亲水性双(1,2,3 - 三唑基)芴衍生物,并通过紫外 - 可见吸收、荧光发射和双光子吸收进行表征,作为对Zn(2+)和Hg(2+)离子具有选择性的新型荧光传感探针。配合物的紫外 - 可见吸收和荧光发射光谱在与Zn(2+)和Hg(2+)离子螯合时呈现蓝移的吸收和发射光谱,导致荧光增强约两倍。荧光滴定表明,与Zn(2+)和Hg(2+)形成的配体与金属配合物的比例为1:2和1:3,结合常数分别为10(8)和10(16)。探针和探针 - 金属离子配合物在800 nm处的双光子吸收截面范围为200 - 350 GM。这些新型荧光化合物可能具有作为新型金属离子传感器探测细胞和生物环境的潜力。