大孔隙
微型多孔材料
污染物
离子键合
多孔性
扩散
化学
化学工程
材料科学
纳米技术
离子
有机化学
介孔材料
催化作用
复合材料
物理
工程类
热力学
作者
Sahel Fajal,Atikur Hassan,Writakshi Mandal,Mandar M. Shirolkar,Sumanta Let,Neeladri Das,Sujit K. Ghosh
标识
DOI:10.1002/anie.202214095
摘要
Abstract In case of pollutant segregation, fast mass diffusion is a fundamental criterion in order to achieve improved performance. The rapid mass transport through porous materials can be achieved by availing large open pores followed by easy and complete accessibility of functional sites. Inducing macroporosity into such materials could serve as ideal solution providing access to large macropores that offer unhindered transport of analyte and full exposure to interactive sites. Moreover, the challenge to configure the ionic‐functionality with macroporosity could emerge as an unparalleled avenue toward pollutants separation. Herein, we strategized a synthetic protocol for construction of a positively charged hierarchically‐porous ordered interconnected macro‐structure of organic framework where the size and number of macropores can easily be tuned. The ordered macropores with strong electrostatic interaction synergistically exhibited ultrafast removal efficiency towards various toxic pollutants.
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