Cheng Dandan, Liu Xingliang, Xie Yadian, Lv Haitang, Wang Zhaoqian, Yang Hongzhi, Han Aixia, Yang Xiaomei, Zang Ling
Chemical Engineering College, Qinghai University, Xining 810016, China.
Department of Materials Science and Engineering, University of Utah, Salt Lake City, UT 84108, USA.
Sensors (Basel). 2017 Nov 2;17(11):2517. doi: 10.3390/s17112517.
This work reports on a novel fluorescent sensor for Cd ion based on the fluorophore of tetramethyl substituted bis(difluoroboron)-1,2-bis[(1-pyrrol-2-yl)methylene]hydrazine (Me₄BOPHY), which is modified with an electron donor moiety of ,-bis(pyridin-2-ylmethyl)benzenamine. Sensor has absorption and emission in visible region, at 550 nm and 675 nm, respectively. The long wavelength spectral response makes it easier to fabricate the fluorescence detector. The sensor mechanism is based on the tunable internal charge transfer (ICT) transition of molecule . Binding of Cd ion quenches the ICT transition, but turns on the π - π transition of the fluorophore, thus enabling ratiometric fluorescence sensing. The limit of detection (LOD) was projected down to 0.77 ppb, which is far below the safety value (3 ppb) set for drinking water by World Health Organization. The sensor also demonstrates a high selectivity towards Cd in comparison to other interferent metal ions.
这项工作报道了一种基于四甲基取代双(二氟硼)-1,2-双[(1-吡咯-2-基)亚甲基]肼(Me₄BOPHY)荧光团的新型镉离子荧光传感器,该荧光团用N,N-双(吡啶-2-基甲基)苯甲胺的电子供体部分进行了修饰。传感器在可见光区域有吸收和发射,分别在550 nm和675 nm处。长波长光谱响应使得更容易制造荧光探测器。传感器机制基于分子的可调谐内电荷转移(ICT)跃迁。镉离子的结合会淬灭ICT跃迁,但会开启荧光团的π-π跃迁,从而实现比率荧光传感。检测限(LOD)预计低至0.77 ppb,远低于世界卫生组织为饮用水设定的安全值(3 ppb)。与其他干扰金属离子相比,该传感器对镉也表现出高选择性。