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Surface Functionalization of Metal-Organic Frameworks for Improved Moisture Resistance
Published on: September 5, 2018
High-Density Salicylaldehyde-Hydrazone in Covalent Organic Frameworks for Ultrafast and Highly Efficient Copper
Zifeng You1, Yue Ying1, Zhiyuan Zhang1
1School of Materials Science and Engineering, National Institute for Advanced Materials, TKL of Metal and Molecule-Based Material Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Frontiers Science Center for New Organic Matter, College of Chemistry, Academy for Advanced Interdisciplinary Studies, Nankai University, Tianjin 300350, P. R. China.
Abstract:
Copper ion (Cu(II)) contamination poses a serious threat to water quality and public health due to its high toxicity and nonbiodegradability. Herein, we develop for the first time high-density salicylaldehyde-hydrazone covalent organic frameworks (COFs) for ultrafast and highly efficient Cu(II) removal. The resulting DhaTGCl-COF exhibits excellent adsorption performance, achieving a record-high adsorption kinetics (k2 = 160.58 mg·g-1·min-1) and one of the highest capacities of 569 mg·g-1 among all adsorbents reported to date. Notably, the material also demonstrates the lowest residual Cu(II) concentration (0.01 ppm) within 30 min. The outstanding performance is attributed to the uniform distribution of high-density, strong-affinity tridentate N,N,O-chelating moieties derived from salicylaldehyde-hydrazone within the well-aligned two-dimensional pore channels, which facilitate rapid diffusion and coordination of Cu(II) to the binding sites and ensure exceptional adsorption efficiency even for trace-level Cu(II). This work not only sets a new benchmark for Cu(II) adsorbents but also opens a promising avenue for the design of high-performance COFs for heavy metal ion removal.
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