Javed Khalid, Abbas Naseem, Bilal Muhammad, Alshihri Abdulaziz A, Rab Nawaz Hafiza Zahra, Ramadan Mohamed Fawzy, Naqvi Syed Ali Raza
Institute of Chemical Sciences, Bahauddin Zakariya University Multan 60800 Punjab Pakistan.
Department of Radiological Sciences, College of Applied Medical Sciences, King Khalid University Abha Saudi Arabia.
RSC Adv. 2024 Sep 27;14(42):30957-30970. doi: 10.1039/d4ra05283h. eCollection 2024 Sep 24.
This study addresses the critical issue of removing organic pollutants from water, focusing on the photocatalytic degradation of Congo red (CR) dye using a novel ZnFeO@Co-Ni metal-organic framework (MOF) nanocomposite (ZFCNM). The primary aim was to develop a photocatalyst with enhanced efficiency by combining the properties of ZnFeO with Co/Ni-MOF, leading to a low band gap (2.89 eV) and a high surface area (723 m g). The ZFCNM nanocomposite, synthesized a hydrothermal method, was characterized by X-ray diffraction (XRD) and field emission scanning electron microscopy (FESEM), confirming the formation of face-centered cubic ferrite and hexagonal MOF structures. Fourier-transform infrared spectroscopy (FTIR) verified the presence of carboxyl (-COOH) groups and Fe-O bonds in the composite. Photodegradation efficiency was evaluated under varying conditions, including reaction time, pH, catalyst dosage, contaminant concentration, and light intensity. The ZFCNM photocatalyst, with an equal mass ratio of Co/Ni-MOF and ZnFeO, achieved a 98% removal efficiency of CR (75 min reaction time, pH 5, at 25 °C, and visible-light intensity of a 50 W LED lamp) significantly outperforming Co/Ni-MOF (24%) and ZnFeO (36%) alone. The estimated quantum yield (QY) was 3.00 × 10 molecules per photon, and kinetic studies revealed a first-order reaction pathway with an value of 0.9813. These results highlight the potential of ZFCNM as an effective photocatalyst for water purification applications.
本研究探讨了从水中去除有机污染物的关键问题,重点关注使用新型ZnFeO@Co-Ni金属有机框架(MOF)纳米复合材料(ZFCNM)对刚果红(CR)染料进行光催化降解。主要目的是通过结合ZnFeO与Co/Ni-MOF的特性来开发一种效率更高的光催化剂,从而实现低带隙(2.89 eV)和高表面积(723 m²/g)。通过水热法合成的ZFCNM纳米复合材料,采用X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)进行表征,证实形成了面心立方铁氧体和六方MOF结构。傅里叶变换红外光谱(FTIR)验证了复合材料中羧基(-COOH)基团和Fe-O键的存在。在不同条件下评估光降解效率,包括反应时间、pH值、催化剂用量、污染物浓度和光照强度。质量比相等的Co/Ni-MOF和ZnFeO组成的ZFCNM光催化剂,在25°C、pH值为5、50 W LED灯可见光强度下,75分钟反应时间内对CR的去除效率达到98%,显著优于单独的Co/Ni-MOF(24%)和ZnFeO(36%)。估计的量子产率(QY)为每光子3.00×10⁻⁴个分子,动力学研究表明反应途径为一级反应,k值为0.9813。这些结果突出了ZFCNM作为一种用于水净化应用的有效光催化剂的潜力。