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Porous Covalent Organic Gels: Design,Synthesis and Fluoroquinolones Adsorption

机译:多孔共价有机凝胶:设计,合成和氟喹诺酮类吸附

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We report the design and synthesis of three highly stable and porous covalent organic gels (HCOGs) based on C3-symmetric benzene-1,3,5-tricarbohydrazides.The resultant HCOGs beared excellent adsorption properties and represented good reusability towards fluoroquinolones from aqueous solutions.The external adsorption behavior as well as internal mechanisms were both discussed.Using kinetic and isotherm analysis,we found that the adsorption processes of the three HCOGs keep to the pseudo-second order kinetic model and abide by the Langmuir isotherm model.Furthermore,the adsorption efficiency and maximum adsorption capacity were demonstrated to be as a result of the internal mechanisms involving proper poriness,electrostatic interactivity,hydrophobic interaction,π-π stacking/interactions and hydrogen bonding.The work thus pays a new way for the preparation of novel porous materials for removing fluoroquinolones from wastewater.
机译:我们报告了基于C3-对称苯1,3,5-三碳二羟基驱动酰胺的三种高度稳定和多孔共价凝胶(HCOG)的设计和合成。所得的HCOGS具有出色的吸附性能,并代表了对来自Aqueous溶液中浮力溶液的良好可重复使用。 讨论了外部吸附行为以及内部机制。使用动力学和等温线分析,我们发现三个HCOG的吸附过程保持在伪秒的阶阶动力学模型,并遵守langmuir等值效率。 效率和最大吸附能力被证明是由于内部机制涉及适当的毛孔性,静电相互作用,疏水相互作用,π-π-π堆积/相互作用和氢键的结果。 用于从废水中去除氟喹诺酮类药物。

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