Université Reims Champagne-Ardenne - Institut de Chimie Moléculaire de Reims, CNRS UMR n° 7312, Groupe Chimie de Coordination, UFR Sciences, BP 1039, 51687 Reims Cedex 2, France.
Dalton Trans. 2013 Sep 14;42(34):12157-64. doi: 10.1039/c3dt51216a. Epub 2013 Jul 9.
A new cyclen derivative L, bearing a methyl-chromeno-pyridinylidene hydrazone moiety, was synthesized and studied in MeOH, as potential fluorescent "OFF-on-ON" sensors for Zn(ii). Photophysical properties of this ligand being PET regulated, L was only weakly emissive in the absence of metal ions (OFF). L fluorescence was increased modestly upon addition of one equivalent of Zn(II), and further increased upon addition of a second equivalent. Therefore, Zn : L behaved as a highly sensitive ON sensor for zinc. This efficiency was correlated to Zn(II) coordination via the hydrazone moiety of the fluorophore, producing an efficient CHelation-Enhanced Fluorescence (CHEF) effect. A complementary theoretical study carried out with DFT calculations further elucidated the optical properties.
一个新的环戊二烯衍生物 L,带有一个甲基-色烯基-吡啶亚基腙部分,在甲醇中被合成并进行了研究,作为潜在的荧光“关-开-关”锌(ii)传感器。由于这个配体的光物理性质受到 PET 调控,因此在没有金属离子的情况下(关),L 的荧光非常微弱。当加入一个当量的 Zn(II)时,L 的荧光略有增加,当加入第二个当量时,荧光进一步增加。因此,Zn:L 作为锌的高灵敏度开传感器。这种效率与通过荧光团的腙部分与锌(ii)配位相关,产生了有效的螯合增强荧光(CHEF)效应。用 DFT 计算进行的补充理论研究进一步阐明了其光学性质。