Chemistry Department, Faculty of Science, King Abdulaziz University, P. O. Box 80203, Jeddah 21589, Saudi Arabia.
Division of Nano Sciences and Department of Chemistry, Ewha Womans University, Seoul, South Korea.
Int J Biol Macromol. 2020 Sep 15;159:276-286. doi: 10.1016/j.ijbiomac.2020.05.036. Epub 2020 May 8.
In this project, cerium oxide-cobalt oxide (CeO-CoO) nanocomposite-based material have been simply synthesized and intercalated to chitosan (CH) hydrogel to prepare CH/CeO-CoO nanocomposite hydrogel. CH/CeO-CoO nanocomposite was applied to nitrophenols reduction where it displayed perfect catalytic activity for 4-nitrophenol as compared to 2-nitrophenol and 2,6-dinitrophenol. Various factors were tested for optimization of catalytic removal approach. Farther, CH/CeO-CoO nanocomposite catalyst was coated on cotton cloth (CC) as support, which provided high catalytic performance even after reusing three times. CeO-CoO nanocomposites was also employed as electrochemical sensor where CeO-CoO was coated on pencil-graphite lead electrode (PGLE) and glassy carbon electrode (GCE) and used as working electrodes to detect different nitrophenols electrochemically via cyclic voltammetry. CeO-CoO was more selective toward 4-nitrophenol and the reduction peak of 4-nitrophenol was much more enhanced with increase in concentration ranging from 11.80 to 48.75 μM. The detection limit was found to be 0.46 μM (S/N = 5). Thus, the prepared materials were selective for detection and removal of 4-nitrophenol. Various factors were tested to optimize best conditions for developed nanocomposite materials in electrochemical sensing and catalytic removal approaches. Thus, it is expected that the designed nanocomposite will be able to employ as promising material for providing clean water.
在这个项目中,简单合成了氧化铈-氧化钴(CeO-CoO)纳米复合材料,并将其嵌入壳聚糖(CH)水凝胶中,制备了 CH/CeO-CoO 纳米复合材料水凝胶。CH/CeO-CoO 纳米复合材料被应用于硝基苯酚的还原,与 2-硝基苯酚和 2,6-二硝基苯酚相比,它对 4-硝基苯酚表现出了完美的催化活性。测试了各种因素以优化催化去除方法。此外,将 CH/CeO-CoO 纳米复合材料催化剂涂覆在棉织物(CC)上作为支撑,即使重复使用三次,也提供了很高的催化性能。CeO-CoO 纳米复合材料也被用作电化学传感器,其中 CeO-CoO 涂覆在铅笔石墨电极(PGLE)和玻碳电极(GCE)上,并用作工作电极,通过循环伏安法电化学检测不同的硝基苯酚。CeO-CoO 对 4-硝基苯酚更具选择性,随着浓度从 11.80 到 48.75 μM 的增加,4-硝基苯酚的还原峰得到了很大的增强。检测限为 0.46 μM(S/N=5)。因此,所制备的材料对 4-硝基苯酚的检测和去除具有选择性。测试了各种因素,以优化电化学传感和催化去除方法中开发的纳米复合材料的最佳条件。因此,预计设计的纳米复合材料将能够作为提供清洁水的有前途的材料。