Dr. S. S. Bhatnagar University Institute of Chemical Engineering and Technology, Panjab University, Chandigarh, 160014, India.
Dr. S. S. Bhatnagar University Institute of Chemical Engineering and Technology, Panjab University, Chandigarh, 160014, India.
Chemosphere. 2023 Jan;311(Pt 1):136832. doi: 10.1016/j.chemosphere.2022.136832. Epub 2022 Oct 15.
Heavy metal contamination has sparked widespread concern among the populace. The significant issues necessitate the creation of high-performance fluorescent pigments that can identify harmful elements in water. The present study deals with metal organic framework [MOF] based on nickel [Ni-BDC MOF]. The Ni-BDC MOF was prepared by facile solvothermal method using nickel nitrate hexahydrate and terephthalic acid ligand as precursors. The MOF was characterized by various techniques in order to examine the crystal, morphological, structural, composition, thermal and optical properties. The detailed characterizations revealed that the synthesized Ni-BDC MOF are well-crystalline with high purity and possessing 3D rhombohedral microcrystals with rough surface. The MOF demonstrate good luminescence performance and excellent water stability. According to the Stern Volmer plot, the tests set up under optimized conditions demonstrate a linear correlation between the fluorescence intensity and concentration of both ions, i.e. Fe, and CrO ions. The linear range and detection limit for Fe and CrO were found to be 0-1.4 nM and 0.159 nM, and 0-1 nM and 0.120 nM, respectively. The mechanisms for the selective detection of cations and anions were also explored. The recyclability for the prepared MOF was checked up to five cycles which showed excellent stability with just a slight reduction in efficiency. The constructed sensor was also used to assess the presence of Fe and CrO ions in actual water samples. The results of the different experiments revealed that the prepared MOF is a good material for detecting Fe and CrO ions.
重金属污染引起了民众的广泛关注。这些重大问题需要开发能够识别水中有害元素的高性能荧光颜料。本研究涉及基于镍的金属有机骨架[MOF](Ni-BDC MOF)。Ni-BDC MOF 通过简便的溶剂热法,以六水合硝酸镍和对苯二甲酸配体为前体制备。通过各种技术对 MOF 进行了表征,以检查晶体、形态、结构、组成、热和光学性能。详细的特征表明,合成的 Ni-BDC MOF 具有良好的结晶性、高纯度和具有粗糙表面的 3D 三方微晶体。MOF 表现出良好的发光性能和优异的水分稳定性。根据 Stern-Volmer 图,在优化条件下设置的测试表明,荧光强度与 Fe 和 CrO 离子的浓度之间存在线性关系。Fe 和 CrO 的线性范围和检测限分别为 0-1.4 nM 和 0.159 nM,0-1 nM 和 0.120 nM。还探讨了阳离子和阴离子选择性检测的机制。检查了制备的 MOF 的可回收性,直至五个循环,显示出极好的稳定性,仅略有效率降低。还将构建的传感器用于评估实际水样中 Fe 和 CrO 离子的存在。不同实验的结果表明,制备的 MOF 是检测 Fe 和 CrO 离子的良好材料。