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用于环境修复的多孔有机聚合物(POPs)。

Porous organic polymers (POPs) for environmental remediation.

作者信息

Fajal Sahel, Dutta Subhajit, Ghosh Sujit K

机构信息

Department of Chemistry, Indian Institute of Science Education and Research, Dr Homi Bhabha Road, Pashan, Pune 411008, India.

Centre for Water Research, Indian Institute of Science Education and Research, Dr Homi Bhabha Road, Pashan, Pune 411008, India.

出版信息

Mater Horiz. 2023 Oct 2;10(10):4083-4138. doi: 10.1039/d3mh00672g.

Abstract

Modern global industrialization along with the ever-increasing growth of the population has resulted in continuous enhancement in the discharge and accumulation of various toxic and hazardous chemicals in the environment. These harmful pollutants, including toxic gases, inorganic heavy metal ions, anthropogenic waste, persistent organic pollutants, toxic dyes, pharmaceuticals, volatile organic compounds, , are destroying the ecological balance of the environment. Therefore, systematic monitoring and effective remediation of these toxic pollutants either by adsorptive removal or by catalytic degradation are of great significance. From this viewpoint, porous organic polymers (POPs), being two- or three-dimensional polymeric materials, constructed from small organic molecules connected with rigid covalent bonds have come forth as a promising platform toward various leading applications, especially for efficient environmental remediation. Their unique chemical and structural features including high stability, tunable pore functionalization, and large surface area have boosted the transformation of POPs into various macro-physical forms such as thick and thin-film membranes, which led to a new direction in advanced level pollutant removal, separation and catalytic degradation. In this review, our focus is to highlight the recent progress and achievements in the strategic design, synthesis, architectural-engineering and applications of POPs and their composite materials toward environmental remediation. Several strategies to improve the adsorption efficiency and catalytic degradation performance along with the in-depth interaction mechanism of POP-based materials have been systematically summarized. In addition, evolution of POPs from regular powder form application to rapid and more efficient size and chemo-selective, "real-time" applicable membrane-based application has been further highlighted. Finally, we put forward our perspective on the challenges and opportunities of these materials toward real-world implementation and future prospects in next generation remediation technology.

摘要

现代全球工业化以及人口的不断增长,导致环境中各种有毒有害化学物质的排放和积累持续增加。这些有害污染物,包括有毒气体、无机重金属离子、人为废物、持久性有机污染物、有毒染料、药物、挥发性有机化合物等,正在破坏环境的生态平衡。因此,通过吸附去除或催化降解对这些有毒污染物进行系统监测和有效修复具有重要意义。从这个角度来看,多孔有机聚合物(POPs)作为由刚性共价键连接的小分子构建而成的二维或三维聚合物材料,已成为一个有前途的平台,可用于各种前沿应用,特别是在高效环境修复方面。它们独特的化学和结构特征,包括高稳定性、可调节的孔功能化和大表面积,推动了POPs向各种宏观物理形式的转变,如厚膜和薄膜,这为高级污染物去除、分离和催化降解开辟了新方向。在这篇综述中,我们重点强调了POPs及其复合材料在环境修复的战略设计、合成、建筑工程和应用方面的最新进展和成就。系统总结了提高吸附效率和催化降解性能的几种策略以及基于POPs材料的深入相互作用机制。此外,还进一步强调了POPs从常规粉末形式应用向快速、更高效的尺寸和化学选择性“实时”适用的基于膜的应用的演变。最后,我们对这些材料在实际应用中的挑战和机遇以及下一代修复技术的未来前景提出了我们的观点。

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