Two-dimensional layered MOF nanosheets with multiple binding sites for selective detection and removal of Fe(III) ions

纳米片 水溶液中的金属离子 吸附 剥脱关节 傅里叶变换红外光谱 材料科学 离子 金属 化学工程 纳米技术 拉曼光谱 化学 物理化学 石墨烯 有机化学 物理 工程类 光学 冶金
作者
Jingling Huang,Shenghua Zhou,Shuyu Zhang,Liping Wang,Xin‐Tao Wu,Qi‐Long Zhu,Yuehong Wen
出处
期刊:Separation and Purification Technology [Elsevier BV]
卷期号:336: 126294-126294 被引量:24
标识
DOI:10.1016/j.seppur.2024.126294
摘要

Heavy metal contamination has become an urgent global concern, posing a significant threat to our environment and health. Hence, it is critical to exploit functional materials for heavy metal ions sensing and elimination. However, the development of multifunctional materials that can simultaneously accomplish the selective detection and removal of the metal ions remains a significant challenge. In this work, a two-dimensional (2D) layered metal–organic framework (LMOF) functionalized with diverse binding sites has been utilized to concurrently detect and remove Fe3+ ions. The LMOF [Zn(hsb-2) (5-aipa)](HSB-W15) was rationally designed and constructed from the mixed ligands of hsb-2 (1,2-bis(4′-pyridylmethylamino)-ethane) and 5-aipa (5-aminoisophthate) under mild condition. In addition, the corresponding ultrathin nanosheets HSB-W15-NS were also obtained by adapting the instant in situ exfoliation (IISEM) method. Owing to the ultrathin nanosheet morphology and an abundance of active sites on the surface, HSB-W15-NS nanosheets can function as an effective fluorescent sensor to detect Fe3+ and Cr3+ ions. Exceptionally, HSB-W15-NS can also be used to selectively capture Fe3+ ions from water, with up to 93 % removal efficiency, and the adsorption equilibrium attained in 5 min. The sensing and adsorption processes were investigated based on kinetic model analysis, Fourier transform infrared spectroscopy, Raman spectrum analysis, density functional theory calculations, and control experiments. This work inspired the development of ultrathin 2D MOF nanosheets for applications in environmental protection.
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