Sboui Mouheb, Alamry Khalid A, Al-Ghamdi Youssef O, Subramanian Balachandran, Swaminathan Meenakshisundaram, Hussein Mahmoud A
Department of Chemistry, Faculty of Sciences, University of Sfax Sfax BP1171-3018 Tunisia
Chemistry Department, Faculty of Science, King Abdulaziz University P. O. Box 80203 Jeddah 21589 Saudi Arabia.
RSC Adv. 2025 Sep 19;15(41):34225-34236. doi: 10.1039/d5ra04993h. eCollection 2025 Sep 17.
Cellulose-based biocomposites exhibit significant potential and versatility in advanced photocatalyst development for environmental remediation. In this study, we synthesized an Ag-AgS/TiO/CT (cotton textile) biocomposite film as an efficient hybrid photocatalyst through a straightforward hydrothermal process to create TiO, followed by a dipping process in an Ag-AgS solution. This biocomposite has shown a high decomposition efficiency of 97% towards -toluidine as a carcinogenic compound in aqueous media after 6 h of light irradiation and complete oxidation of alcoholic compounds (which include 1-butanol, 1-propanol, and ethanol) as volatile organic compounds (VOCs) in a gaseous medium under sunlight at room temperature. Moreover, it showed notable antibacterial activity against . This high efficiency of Ag-AgS/TiO/CT can be, in particular, due to the synergistic effect between Ag-AgS and TiO, which includes the smooth transfer of charges owing to their efficient separation, recombination inhibition, and improved absorption of visible light. Moreover, the prepared hybrid photocatalyst showed enhanced mechanical strength, high stability and strong durability, ensuring its reuse for several cycles. Our findings indicate that Ag-AgS/TiO/CT holds promise as a multifunctional material for water treatment and is capable of removing organic pollutants, eliminating bacteria, and purifying air simultaneously.
纤维素基生物复合材料在用于环境修复的先进光催化剂开发中展现出巨大的潜力和多功能性。在本研究中,我们通过简单的水热法合成了一种Ag-AgS/TiO/CT(棉织物)生物复合薄膜作为高效的混合光催化剂,先制备TiO,然后将其浸入Ag-AgS溶液中。该生物复合材料在光照6小时后,对水性介质中作为致癌化合物的对甲苯胺表现出97%的高分解效率,并且在室温下的阳光下,对气态介质中作为挥发性有机化合物(VOCs)的醇类化合物(包括1-丁醇、1-丙醇和乙醇)实现了完全氧化。此外,它对……表现出显著的抗菌活性。Ag-AgS/TiO/CT的这种高效率尤其可能归因于Ag-AgS与TiO之间的协同效应,这包括由于它们的有效分离而实现的电荷顺利转移、复合抑制以及可见光吸收的改善。此外,制备的混合光催化剂表现出增强的机械强度、高稳定性和强耐久性,确保其可重复使用多个循环。我们的研究结果表明,Ag-AgS/TiO/CT有望成为一种用于水处理的多功能材料,能够同时去除有机污染物、消除细菌和净化空气。