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通过优化多孔结构的溶胀状态高效构建高质量磺化多孔芳香骨架

Efficient construction of high-quality sulfonated porous aromatic frameworks by optimizing the swelling state of porous structures.

作者信息

Yang Lulu, Zhan Zhen, Zhao Lin, Zhang Chengxin, Wang Shaolei, Hu Wei, Zhu Guangshan

机构信息

Key Laboratory of Polyoxometalate and Reticular Material Chemistry of Ministry of Education, Faculty of Chemistry, Northeast Normal University Changchun 130024 China

Department of Applied Physics, The Hong Kong Polytechnic University Kowloon 999077 Hong Kong SAR China.

出版信息

Chem Sci. 2024 Nov 27;16(2):775-783. doi: 10.1039/d4sc05329j. eCollection 2025 Jan 2.

Abstract

Conventional post-modification methods usually face the fundamental challenge of balancing the high content of functional groups and large surface area for porous organic polymers (POPs). The reason, presumably, stems from ineffective and insufficient swelling of the porous structure of POP materials, which is detrimental to mass transfer and modification of functional groups, especially with large-sized ones. It is important to note that significant differences exist in the porous structures of POP materials in a solvent-free state after thermal activation and solvent swelling state. Herein, we propose that the improvement of the swelling state of the porous structure of POP materials is more conducive to obtaining high-quality sulfonated POP materials, and employ a one-pot modification strategy for preparing sulfonated porous aromatic frameworks (PAFs) to prove the proposal. These results show that the specific surface area of the resulting polymer is 580 m g with a sulfur content of up to 13.2 wt%, which is superior to most sulfonated porous materials and the control sample. More importantly, we have also shown that the same conclusion is reached by performing similar treatments on hyper-crosslinked polymers (HCPs) and conjugated microporous polymers (CMPs), proving that our hypothesis is effective and feasible when compared to the conventional post-sulfonation method. The excellent hydrophilicity, rich content of sulfonic acid groups, high specific surface area and hierarchical pore structure make the resulting polymer an ideal adsorbent for micro-pollutants in water. The maximum adsorption capacities for Rhodamine B (RhB), Methylene Blue (MB), Tetracycline (TC) and Ciprofloxacin (CIP) are 1075 mg g, 1020 mg g, 826 mg g and 1134 mg g, respectively. This study not only demonstrates the preparation of efficient sulfonated porous adsorbents for the efficient removal of cationic dyes and antibiotics but also illustrates an effective method for constructing high-quality functional POP materials by optimizing the swelling state of the porous structure.

摘要

传统的后修饰方法通常面临着在多孔有机聚合物(POPs)中平衡高含量官能团和大表面积这一根本性挑战。据推测,原因在于POP材料多孔结构的溶胀无效且不充分,这对传质和官能团的修饰不利,尤其是对于大尺寸的官能团。需要注意的是,热活化后的无溶剂状态和溶剂溶胀状态下的POP材料的多孔结构存在显著差异。在此,我们提出改善POP材料多孔结构的溶胀状态更有利于获得高质量的磺化POP材料,并采用一锅法修饰策略制备磺化多孔芳香骨架(PAFs)以证明这一观点。这些结果表明,所得聚合物的比表面积为580 m²/g,硫含量高达13.2 wt%,优于大多数磺化多孔材料和对照样品。更重要的是,我们还表明,对超交联聚合物(HCPs)和共轭微孔聚合物(CMPs)进行类似处理也能得出相同结论,证明与传统的后磺化方法相比,我们的假设是有效且可行的。所得聚合物优异的亲水性、丰富的磺酸基团含量、高比表面积和分级孔结构使其成为水中微污染物的理想吸附剂。对罗丹明B(RhB)、亚甲基蓝(MB)、四环素(TC)和环丙沙星(CIP)的最大吸附容量分别为1075 mg/g、1020 mg/g、826 mg/g和1134 mg/g。本研究不仅展示了用于高效去除阳离子染料和抗生素的高效磺化多孔吸附剂的制备,还阐述了一种通过优化多孔结构的溶胀状态来构建高质量功能性POP材料的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3d1/11694909/039e8d7fff3e/d4sc05329j-f1.jpg

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