Debre Tabor University, College of Natural and Computational Science, Department of Chemistry, Debre Tabor, Ethiopia.
Department of Industrial Chemistry, College of Natural and Applied Sciences, Addis Ababa Science and Technology University, P.O. Box: 16417, Addis Ababa, Ethiopia.
Int J Biol Macromol. 2024 May;267(Pt 1):131228. doi: 10.1016/j.ijbiomac.2024.131228. Epub 2024 Mar 28.
The extremely low antioxidant, photocatalytic, and antibacterial properties of cellulose limit its application in the biomedical and environmental sectors. To improve these properties, nanohybrides were prepared by mixing carboxylated cellulose nanocrystals (CCNCs) and zinc nitrate hexahydrate. Data from FTIR, XRD, DLS, and SEM spectra showed that, ZnO nanoparticles, with a size ranging from 94 to 351 nm and the smallest nanoparticle size of 164.18 nm, were loaded onto CCNCs. CCNCs/ZnO nanohybrids demonstrated superior antibacterial, photocatalytic, and antioxidant performance. More considerable antibacterial activity was shown with a zone of inhibition ranging from 26.00 ± 1.00 to 40.33 ± 2.08 mm and from 31.66 ± 3.51 to 41.33 ± 1.15 mm against Gram-positive and Gram-negative bacteria, respectively. Regarding photodegradation properties, the maximum value (∼91.52 %) of photocatalytic methylene blue degradation was observed after 75 min exposure to a UV lamp. At a concentration of 125.00 μm/ml of the CCNC/ZnO nanohybrids sample, 53.15 ± 1.03 % DPPH scavenging activity was obtained with an IC value of 117.66 μm/ml. A facile, cost-effective, one-step synthesis technique was applied to fabricate CCNCs/ZnO nanohybrids at mild temperature using Oxytenanthera abyssinica carboxylated cellulose nanocrystals as biotemplate. The result showed that CCNCs/ZnO nanohybrids possess potential applications in developing advanced functional materials for dye removal and antibacterial and antioxidant applications.
纤维素具有极低的抗氧化、光催化和抗菌性能,限制了其在生物医学和环境领域的应用。为了改善这些性能,通过混合羧基化纤维素纳米晶(CCNCs)和六水合硝酸锌制备了纳米杂化物。FTIR、XRD、DLS 和 SEM 谱的数据表明,ZnO 纳米粒子负载在 CCNCs 上,其尺寸范围为 94 至 351nm,最小纳米粒子尺寸为 164.18nm。CCNCs/ZnO 纳米杂化物表现出优异的抗菌、光催化和抗氧化性能。抑菌圈的抑制范围为 26.00±1.00 至 40.33±2.08mm 和 31.66±3.51 至 41.33±1.15mm,对革兰氏阳性菌和革兰氏阴性菌均表现出更高的抗菌活性。在光降解性能方面,在暴露于紫外灯 75 分钟后,观察到最大的亚甲基蓝光催化降解值(约 91.52%)。在 CCNC/ZnO 纳米杂化物样品浓度为 125.00μm/ml 的条件下,DPPH 清除活性为 53.15±1.03%,IC 值为 117.66μm/ml。采用简便、经济高效的一步法合成技术,在温和的温度下,以 Oxytenanthera abyssinica 羧基化纤维素纳米晶作为生物模板制备 CCNCs/ZnO 纳米杂化物。结果表明,CCNCs/ZnO 纳米杂化物具有在开发用于去除染料和抗菌、抗氧化应用的先进功能材料方面的应用潜力。