Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education, China), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, China.
J Hazard Mater. 2012 Sep 15;231-232:105-13. doi: 10.1016/j.jhazmat.2012.06.044. Epub 2012 Jun 29.
An energetic TiN cathode was fabricated for effective electrocatalytic debromination of 2,2',4,4'-tetrabromodiphenyl ethers (BDE-47); this was achieved by placing Ti foils in an aqueous suspension of TiN nanoparticles, then drying the system at 50 °C for 12 h. TEM and SEM characterization showed that the TiN nanoparticles-whose average size was approximately 50 nm-were ideal nano-cubic structures and distributed uniformly on the Ti substrate. When applied as a cathode in cyclic voltammetry measurements, the TiN electrode exhibited stable electrochemical performance over 20 cycles, in the ∼1-10 pH range. The overpotential of the TiN cathode for electrochemical reduction of water (the main side reaction during the electrocatalytic reduction of pollutants in aqueous solution) was determined as 0.54 V, which was much higher than the values for either a Pt wafer (0.12 V), or a Pt film (0.07 V). The TiN electrodes displayed superior electrocatalytic activity for the electrocatalytic debromination of BDE-47. The kinetic constant of BDE-47 degradation on TiN cathode is 0.65 h(-1), which was 2, 4 and 17 times as much as those on Pt film, Pt wafer and graphite cathodes, respectively. A pathway was proposed for the degradation of BDE-47, based on measurements of the intermediate products resulting from the removal of BDE-47 by GC-MS.
我们制备了一种高能 TiN 阴极,用于有效电催化脱溴 2,2',4,4'-四溴二苯醚(BDE-47);这是通过将钛箔放置在 TiN 纳米粒子的水性悬浮液中,然后在 50°C 下干燥 12 小时来实现的。TEM 和 SEM 表征表明,TiN 纳米粒子(平均尺寸约为 50nm)为理想的纳米立方结构,均匀分布在 Ti 基底上。当将 TiN 电极用作循环伏安测量中的阴极时,在 1-10 pH 范围内,其电化学性能在 20 个循环中表现出稳定。TiN 阴极电化学还原水(水溶液中污染物电催化还原的主要副反应)的过电势确定为 0.54V,远高于 Pt 片(0.12V)或 Pt 膜(0.07V)的值。TiN 电极对 BDE-47 的电催化脱溴表现出优异的电催化活性。TiN 阴极上 BDE-47 降解的动力学常数为 0.65h(-1),分别是 Pt 膜、Pt 片和石墨阴极的 2、4 和 17 倍。基于 GC-MS 测量去除 BDE-47 产生的中间产物,提出了 BDE-47 降解的途径。