College of Materials Science & Engineering, South China University of Technology, Guangzhou 510640, P. R. China.
Analyst. 2012 Apr 7;137(7):1698-705. doi: 10.1039/c2an16231h. Epub 2012 Feb 22.
Due to the hazardous nature of mercury ions, the development of a cost effective, sensitive and field-portable sensor is of high significance for both industry and civilian use. In this work, a FRET-based ratiometric sensor for detecting mercury ions in water was fabricated by depositing a multilayered silica structure on a quartz plate. For the preparation of the film-based sensor, a silica support layer was first deposited on the quartz plate by using the sol-gel spin-coating procedure, and three ultrathin functional layers (donor, spacer and receptor) were then deposited on the support layer by dip-coating in a stepwise manner in toluene solution. As the film-based sensor was placed into an aqueous solution of Hg(2+), the non-fluorescent receptor (a spirolactam rhodamine derivative) on the film surface could form a complex with the mercury ion and act as the acceptor of the energy transfer. Upon excitation, the donor (a nitrobenzoxadiazolyl derivative, NBD) could transfer its excited energy from the donor layer to the acceptor on the film surface via the 'through space' energy transfer process, thus realizing the FRET-based ratiometric sensing for mercury ions. The sensor can selectively detect Hg(2+) in water with the detection limit of 1 μM. This solid film sensor is capable of being easily-portable and visualized detection. This strategy may offer new approaches for constructing other FRET-based solid-state devices.
由于汞离子的危害性,开发一种经济高效、敏感且适用于现场的传感器对于工业和民用都具有重要意义。在这项工作中,通过在石英板上沉积多层二氧化硅结构,制备了一种基于荧光共振能量转移(FRET)的比率型传感器,用于检测水中的汞离子。为了制备基于薄膜的传感器,首先通过溶胶-凝胶旋涂工艺在石英板上沉积一层二氧化硅支撑层,然后通过在甲苯溶液中分步浸涂的方式在支撑层上沉积三个超薄功能层(供体、间隔层和受体)。当将基于薄膜的传感器置于含 Hg(2+)的水溶液中时,薄膜表面上的非荧光受体(螺环缩酮罗丹明衍生物)可以与汞离子形成配合物,并作为能量转移的受体。激发时,供体(硝基苯并恶二唑衍生物,NBD)可以通过“通过空间”能量转移过程将其激发能量从供体层传递到薄膜表面上的受体,从而实现基于 FRET 的汞离子比率型传感。该传感器可以选择性地检测水中的 Hg(2+),检测限为 1 μM。这种固态薄膜传感器具有易于携带和可视化检测的特点。该策略可能为构建其他基于 FRET 的固态器件提供新的途径。