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首页> 外文期刊>New Journal of Chemistry >Rational design, fabrication and characterization of a thiol-rich 3D-porous hypercrosslink polymer as a new engineered Hg2+ sorbent: enhanced selectivity and uptake
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Rational design, fabrication and characterization of a thiol-rich 3D-porous hypercrosslink polymer as a new engineered Hg2+ sorbent: enhanced selectivity and uptake

机译:富含硫醇的3D多孔高速公路聚合物的理性设计,制造和表征作为一种新的工程化HG2 +吸附剂:增强的选择性和摄取

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摘要

A novel water-insoluble mesoporous adsorbent based on a 3D-network polymer containing pendant thiol groups was synthesized via post-functionalization of the polymeric backbone for fast, efficient and selective removal of toxic mercury ions from aqueous solutions. The structural and textural properties of the newly designed adsorbent were characterized by fourier transform infrared spectroscopy (FT-IR), atomic force microscopy (AFM), elemental analysis (CHNS), thermal gravimetric analysis (TGA) and derivative thermogravimetric analysis (DTG). The synergistic incorporation of the porous matrix and active sites of this new adsorbent offered a unique combination for high-efficiency and high-selectivity Hg2+ removal, which made it a new class of solid-support sorbent for clean-up of contaminated water.
机译:通过聚合物主链的后官能化,合成基于含有悬浮硫醇基团的3D网络聚合物的新型水不溶性介孔吸附剂,用于快速,有效,选择性地从水溶液中去除有毒汞离子。 新设计吸附剂的结构和纹理性质的特征在于傅里叶变换红外光谱(FT-IR),原子力显微镜(AFM),元素分析(CHN),热重分析(TGA)和衍生热重分析(DTG)。 这种新吸附剂的多孔基质和活性位点的协同掺入为高效率和高选择性HG2 +去除提供了独特的组合,使其成为一种新的固体支持吸附剂,用于清除受污染的水。

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