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Ultra-small CoOx/GO catalyst supported on ITO glass obtained by electrochemical post-treatment of a redox-active infinite coordination polymer: a portable reactor for real-time monitoring of catalytic oxidative degradation of colored wastewater

机译:通过电化学后处理的ITO玻璃支持的超小型CoOX / GO催化剂通过氧化还原活性无限配位聚合物的电化学处理:一种便携式反应器,用于实时监测着色废水的催化氧化降解

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In this work, we have developed a novel method for preparing a CoOx/GO catalyst supported on ITO glass by electrochemical post-treatment of redox-active infinite coordination polymer (ICP) {Co(3,5-dbsq)(3,5-dbcat)(bix)} nanoparticles. Firstly, highly dispersed CoOx nanoparticles with ultra-small size and narrow size distribution (1.42 +/- 0.34 nm) were in situ synthesized on ITO glass after electrochemical polarization of ICP coated on ITO glass at -1.1 V for 16.7 min (1000 s) in 0.10 mol L-1 KCl. Graphene oxide (GO) was next mixed with the ICP to obtain the CoOx/GO catalyst supported on ITO glass (the size of CoOx nanoparticles ranged within 1.21 +/- 0.28 nm), which proved to have improved catalytic performance and enhanced stability compared to the pure CoOx. The catalytic activity of this CoOx/GO catalyst was then optimized according to the degradation efficiency of methylene blue (MB) via an advanced oxidation process in the presence of peroxymonosulfate (PMS). Under the optimal conditions here, the enhanced catalytic oxidative degradation of dye solution could be achieved easily. 100% of MB (2.0 mL, 20 mg L-1) could be decomposed within 6.7 min, which is better than other CoOx catalysts. With this kind of ITO glass as a component part, a portable reactor was constructed for the first time. Real-time monitoring of the catalytic degradation of colored wastewater from the textile and cosmetic industries was then achieved using this reactor directly by incorporating a UV/vis spectrometer, which is of great importance for information analysis and process control optimization during industrial wastewater treatment.
机译:在这项工作中,我们开发了一种新的方法,用于通过氧化还原活性无限配位聚合物(ICP){Co(3,5-DBSQ)的电化学处理(3,5- DBCAT)(BIX)}纳米颗粒。首先,具有超小尺寸和窄尺寸分布(1.42 +/- 0.34nm)的高度分散的CoOx纳米颗粒在ITO玻璃上合成的ITO玻璃,在ITO玻璃上的ITO玻璃上的ITO玻璃上进行16.7分钟(1000秒)在0.10 mol L-1 KCl中。接下来将石墨烯(GO)与ICP混合,得到ITO玻璃中负载的COOO / GO催化剂(COOX纳米颗粒的尺寸范围内,其在1.21 +/- 0.28nm内),其证明是改善的催化性能和增强的稳定性纯CoOX。然后根据过氧键硫酸盐(PMS)在存在下通过先进的氧化方法根据亚甲基蓝(MB)的降解效率优化该CoOX / GO催化剂的催化活性。在此处的最佳条件下,可以容易地实现染料溶液的增强催化氧化降解。 100%的Mb(2.0mL,20mg L-1)可以在6.7分钟内分解,比其他COOO催化剂更好。通过这种ITO玻璃作为组件部分,首次构建便携式反应器。通过掺入UV / Vis光谱仪,使用该反应器实时监测来自纺织品和化妆品行业的纺织和化妆品行业的催化退化,这对于工业废水处理期间的信息分析和过程控制优化非常重要。

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