College of Mechanical and Electrical Engineering, Qingdao University, 308 Ningxia Rd, Qingdao 266071, PR China.
State Key Laboratory of Bio-Fibers and Eco-Textiles, College of Materials Science and Engineering, Collaborative Innovation Center for Marine Biomass Fibers, Materials and Textiles of Shandong Province, Institute of Marine Biobased Materials, Qingdao University, 308 Ningxia Rd, Qingdao 266071, PR China.
Int J Biol Macromol. 2024 Jan;256(Pt 1):128433. doi: 10.1016/j.ijbiomac.2023.128433. Epub 2023 Nov 25.
With the exponentially increase of dye pollutants, the purification of dye wastewater has been an urgent ecological problem. As a novel type of porous adsorbent, metal-organic frameworks still face challenges in recyclability, agglomeration, and environmentally unfriendly synthesis. Herein, MOF-525 was in-situ growth onto the surface of the chitosan (CS) beads to fabricate MOF-525@CS aerogel. CS was utilized as substrate to uniformly disperse MOF-525, thereby significantly mitigating agglomeration and improving recyclability of MOF-525. The characterization results shown that MOF-525@CS aerogel had a high specific surface area of 103.0 m·g, and MOF-525 was uniformly distributed in the 3D porous structure of CS, and the presence of benzoic acid was detected. The MOF-525@CS aerogel had a remarkable adsorption capacity of 1947 mg·g for Congo red, which is greater than the sum of its parts. MOF-525@CS aerogel also inherited the rapid adsorption ability of MOF-525, removing 80 % of Congo red within 600 min. Such excellent adsorption performance can be attributed to the benzoic acid trapped by CS via CN band to enhance the π-π stacking interactions. Additionally, the utilization of benzoic acid makes the synthesis process of MOF-525@CS aerogel more environmentally friendly. The high-efficient MOF-525@CS aerogel is a competitive candidate for dye pollution adsorption.
随着染料污染物的指数级增长,染料废水的净化已成为一个紧迫的生态问题。作为一种新型多孔吸附剂,金属有机骨架在可回收性、团聚和不环保的合成方面仍然面临挑战。在此,将 MOF-525 原位生长到壳聚糖(CS)珠的表面上,以制备 MOF-525@CS 气凝胶。CS 被用作基质来均匀分散 MOF-525,从而显著减轻团聚并提高 MOF-525 的可回收性。表征结果表明,MOF-525@CS 气凝胶具有 103.0 m·g 的高比表面积,并且 MOF-525 均匀分布在 CS 的 3D 多孔结构中,并检测到苯甲酸的存在。MOF-525@CS 气凝胶对刚果红具有显著的吸附能力,达到 1947 mg·g,大于其各部分的总和。MOF-525@CS 气凝胶还继承了 MOF-525 的快速吸附能力,在 600 min 内去除了 80%的刚果红。这种优异的吸附性能可以归因于 CS 通过 CN 带捕获的苯甲酸增强了π-π 堆积相互作用。此外,苯甲酸的使用使 MOF-525@CS 气凝胶的合成过程更加环保。高效的 MOF-525@CS 气凝胶是一种有竞争力的染料污染吸附剂。