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Hypercrosslinked porous polymers hybridized with graphene oxide for water treatment: dye adsorption and degradation

机译:与氧化石墨烯杂交的超交联多孔聚合物用于水处理:染料吸附和降解

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Hypercrosslinked porous polymer hybridized graphene oxide with polymeric high internal phase emulsions (polyHIPEs/GO) were designed as versatile composites for water treatment. Morphologies, chemical composition and thermal stability of the composites were characterized by SEM, FTIR, XPS, XRD and TGA. Tunable adsorption properties and enhanced visible-light photocatalysis towards organic dyes were achieved by the manipulation of functional groups and the inclusion of Ag _(3) PO _(4) , respectively. The adsorption capacity of polyHIPEs/GO towards cationic methyl blue (MB) and rhodamine B (RB) is 1250.3 and 1054.1 μg g ~(?1) , respectively. Aminated polyHIPEs/GO (polyHIPEs _((NH _(2) )) /GO) possesses an adsorption capacity of 1967.3 μg g ~(?1) to anionic eosin Y (EY). The tandem columns of polyHIPEs _((NH _(2) )) /GO and polyHIPEs/GO can successively and selectively remove the cationic and anionic dyes in a mixed dye solution. Furthermore, enhanced photodegradation ability was obtained after GO reduction and Ag _(3) PO _(4) addition on polyHIPEs _((NH _(2) )) /GO. Results show that 3.5 × 10 ~(?5) M of MB, RB and EY can be completely photodegraded by 20 mg of the novel photocatalyst within 20, 40 and 35 min, respectively. This work demonstrates that polyHIPEs/GO exhibits tunable properties for multiply progressive applications in water treatment and catalysis.
机译:具有聚合物高内相乳液(polyHIPEs / GO)的超交联多孔聚合物杂化氧化石墨烯被设计为用于水处理的通用复合材料。通过SEM,FTIR,XPS,XRD和TGA对复合材料的形貌,化学组成和热稳定性进行了表征。通过控制官能团和分别包含Ag _(3)PO _(4)可以实现对有机染料的可调吸附性能和增强的可见光光催化作用。 polyHIPEs / GO对阳离子甲基蓝(MB)和若丹明B(RB)的吸附容量分别为1250.3和1054.1μgg〜(?1)。胺化的polyHIPEs / GO(polyHIPEs _((NH_(2))/ GO)具有对阴离子曙红Y(EY)的吸附能力为1967.3μgg〜(Δ1)。 polyHIPEs _((NH _(2)))/ GO和polyHIPEs / GO的串联色谱柱可以依次选择性地去除混合染料溶液中的阳离子和阴离子染料。此外,在聚HIPEs _((NH _((2)))/ GO上GO还原和添加Ag_(3)PO_(4)后获得增强的光降解能力。结果表明,分别在20、40和35分钟内用20 mg新型光催化剂可以完全降解3.5×10〜(?5)M的MB,RB和EY。这项工作表明,polyHIPEs / GO在水处理和催化中的多重渐进应用中显示出可调性。

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