Department of Physics, Jadavpur University, Kolkata, 700032, India.
Department of Physics, Jadavpur University, Kolkata, 700032, India; Department of Physics, Bangabasi College, Kolkata, 700009, India.
J Environ Manage. 2024 May;359:120985. doi: 10.1016/j.jenvman.2024.120985. Epub 2024 Apr 26.
Amid rising water contamination from industrial sources, tackling toxic dyes and pathogens is critical. Photocatalysis offers a cost-effective and eco-friendly solution to this pressing challenges. Herein, we synthesized Te and Er doped ZrO photocatalysts through hydrothermal method and investigated their efficacy in degrading Congo red (CR) and pathogens under visible light. XRD and Raman Spectroscopy confirm monoclinic and tetragonal mixed-phases without any impurities. Doping-induced defects, reduced crystalline diameter, high surface area, modified bandgap (2.95 eV), photoluminescence quenching, coupled with interfacial polarization, contribute to EZO's excellent dielectric response (1.149 × 10), for achieving remarkable photocatalytic activity, verified by photoelectrochemical measurements, LC-MS and phytotoxicity analysis. Under optimal conditions, EZO achieves 99% CR degradation within 100 min (TOC 79.9%), surpassing ZO (77%) and TZO (84%). Catalyst dosages, dye concentrations, and solution pH effect on EZO's photocatalytic performance are systematically assessed. Scavenging experiment emphasized the pivotal role of · OH in CR degradation with 96.4% efficiency after 4 cycles, affirming its remarkable stability. Moreover, EZO demonstrates ROS-mediated antibacterial activity against E. faecalis and E. coli bacteria under visible light, achieving >97% and >94% inhibition rate with an inhibition zone > 3 mm. Hence, the nanoparticle's dual action offers a practical solution for treating contaminated wastewater, ensuring safe irrigation.
在工业源水污染加剧的情况下,处理有毒染料和病原体至关重要。光催化为解决这一紧迫挑战提供了一种具有成本效益和环保友好的解决方案。在此,我们通过水热法合成了 Te 和 Er 掺杂的 ZrO 光催化剂,并研究了它们在可见光下降解刚果红(CR)和病原体的效果。XRD 和拉曼光谱证实了无杂质的单斜相和四方相混合相。掺杂诱导的缺陷、结晶直径减小、高表面积、带隙修正(2.95 eV)、光致发光猝灭以及界面极化共同导致 EZO 具有出色的介电响应(1.149×10),从而实现了卓越的光催化活性,通过光电化学测量、LC-MS 和植物毒性分析得到了验证。在最佳条件下,EZO 在 100 分钟内实现了 99%的 CR 降解(TOC 为 79.9%),超过了 ZO(77%)和 TZO(84%)。系统评估了催化剂剂量、染料浓度和溶液 pH 对 EZO 光催化性能的影响。清除实验强调了·OH 在 CR 降解中的关键作用,在 4 个循环后效率达到 96.4%,证实了其出色的稳定性。此外,EZO 在可见光下对粪肠球菌和大肠杆菌具有 ROS 介导的抗菌活性,抑制率分别达到>97%和>94%,抑制区>3mm。因此,该纳米颗粒的双重作用为处理受污染废水提供了一种实用的解决方案,确保了安全灌溉。