Chemistry Department, Faculty of Science, King Abdulaziz University, P. O. Box 80203, Jeddah 21589, Saudi Arabia.
Chemistry Department, Faculty of Science, King Abdulaziz University, P. O. Box 80203, Jeddah 21589, Saudi Arabia.
Int J Biol Macromol. 2021 Jan 15;167:101-116. doi: 10.1016/j.ijbiomac.2020.11.074. Epub 2020 Nov 18.
Carboxymethyl cellulose/copper oxide-nickel oxide (CMC/CuO-NiO) nanocomposite beads were prepared by facile, simple and environmentally friendly method. Initially, CuO-NiO was prepared and applied for the catalytic reduction of 4-nitrophenol (4-NP). The results showed that CuO-NiO demonstrate high catalytic activity toward the reduction of 4-NP to 4-aminophenol (4-AP) with a rate constant of 2.97 × 10 s. Further, CuO-NiO were well-dispersed in the polymeric matrix of carboxymethyl cellulose to prepare CMC/CuO-NiO beads. CMC/CuO-NiO nanocomposite beads were also applied to catalyze the reduction of potassium ferrocyanide (KFe (CN)), 4-NP, Congo red (CR) and Eosin yellow (EY) in the presence of sodium borohydride. Experimental data indicated that CMC/CuO-NiO nanocomposite has higher catalytic activity and high rate constant compared to CuO-NiO. The rate constant found to be 6.88 × 10, 6.27 × 10, 1.89 × 10 and 2.43 × 10 for KFe(CN), 4-NP, CR and EY, respectively, using 5 mg CMC/CuO-NiO beads. FE-SEM, EDX, FTER, XRD and XPS were used to characterize the nanocomposites. CMC/CuO-NiO beads catalytically reduced up to 95-99% of KFe(CN), 4-NP, CR and EY within 40, 60, 120 and 120 s. CMC/CuO-NiO beads were found more selective for the reduction of 4-NP. The catalytic reduction performance of CMC/CuO-NiO beads was optimized by studying the influence of different parameters on the catalytic reduction of 4-NP. Hence, the effective and super catalytic performance toward the reduction of different organic and inorganic pollutants makes CMC/CuO-NiO beads a smart material and suitable for numerous scientific and industrial applications and may be used as an alternative to high-cost commercial catalysts.
羧甲基纤维素/氧化铜-氧化镍(CMC/CuO-NiO)纳米复合材料珠粒通过简便、简单和环保的方法制备。首先,制备了 CuO-NiO,并将其用于催化还原 4-硝基苯酚(4-NP)。结果表明,CuO-NiO 对 4-NP 还原为 4-氨基酚(4-AP)具有高催化活性,速率常数为 2.97×10 s。进一步,将 CuO-NiO 很好地分散在羧甲基纤维素的聚合物基质中,制备 CMC/CuO-NiO 珠粒。还将 CMC/CuO-NiO 纳米复合材料珠粒用于在硼氢化钠存在下催化还原铁氰化钾(KFe(CN))、4-NP、刚果红(CR)和曙红黄(EY)。实验数据表明,CMC/CuO-NiO 纳米复合材料具有比 CuO-NiO 更高的催化活性和更高的速率常数。对于 KFe(CN)、4-NP、CR 和 EY,发现的速率常数分别为 6.88×10、6.27×10、1.89×10 和 2.43×10,使用 5 mg CMC/CuO-NiO 珠粒。FE-SEM、EDX、FTIR、XRD 和 XPS 用于表征纳米复合材料。CMC/CuO-NiO 珠粒在 40、60、120 和 120 s 内催化还原 KFe(CN)、4-NP、CR 和 EY 的比例高达 95-99%。CMC/CuO-NiO 珠粒对 4-NP 的还原具有更高的选择性。通过研究不同参数对 4-NP 催化还原的影响,优化了 CMC/CuO-NiO 珠粒的催化还原性能。因此,对不同有机和无机污染物的有效和超催化性能使 CMC/CuO-NiO 珠粒成为一种智能材料,适用于众多科学和工业应用,并可能替代昂贵的商业催化剂。