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Synthesis of Diblock Polyampholyte PAMPS-b-PMAPTAC and Its Adsorption on Bentonite

机译:二嵌段聚两性电解质PAMPS-b-PMAPTAC的合成及其在膨润土上的吸附

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摘要

To study the adsorption of polyampholyte on bentonite (Bent), a block polyampholyte, PAMPS-b-PMAPTAC, comprised of 2-Acrylamido-2-Methylpropane Sulfonic Acid (AMPS) units and Methacrylamido Propyl Trimethyl Ammonium Chloride (MAPTAC) units, was synthesized using reversible addition-fragmentation chain transfer polymerization (RAFT) method. The block polyampholyte samples were characterized by FTIR, 1H NMR and Gel Permeation Chromatography (GPC). The microstructure of block polyampholyte and random polyampholyte in deionized water indicated that uneven distribution of charged groups increased the entanglement of polymer chains. Addition of salt weakened the electrostatic interactions among charged groups, and, therefore, increased the zeta potential of polyampholyte in aqueous solutions. The adsorptive behaviors of PAMPS-b-PMAPTAC on Bent were studied using elemental analysis, and the effects of external factors were considered. The adsorption equilibrium of polymers on Bent was reached after 12 h. Increased temperature and increased salinity exerted a positive and negative effect on the adsorption of polyampholyte, respectively. The molecular weight played as the decisive factor for the adsorption of polyampholyte in the absence of NaCl, while the content of cationic groups acted as the main factor in the presence of NaCl. Block polyampholyte exhibited higher adsorption than random polyampholyte in the absence of salt. XRD results also indicated that block polyampholyte had a better intercalation effect than random polyampholyte.
机译:为了研究聚两性电解质在膨润土(Bent)上的吸附,合成了一种嵌段两性电解质PAMPS-b-PMAPTAC,它由2-丙烯酰胺基-2-甲基丙烷磺酸(AMPS)单元和甲基丙烯酰胺基丙基三甲基氯化铵(MAPTAC)单元组成。使用可逆加成-断裂链转移聚合(RAFT)方法。通过FTIR, 1 NMR和凝胶渗透色谱法(GPC)对嵌段多两性电解质样品进行表征。去离子水中嵌段聚两性电解质和无规聚两性电解质的微观结构表明,带电基团的不均匀分布增加了聚合物链的缠结。盐的添加减弱了带电基团之间的静电相互作用,因此,增加了水溶液中聚两性电解质的ζ电势。利用元素分析方法研究了PAMPS-b-PMAPTAC对Bent的吸附行为,并考虑了外部因素的影响。 12 h后达到聚合物在Bent上的吸附平衡。温度升高和盐度升高分别对聚两性电解质的吸附产生正面和负面影响。在没有氯化钠的情况下,分子量是吸附两性电解质的决定性因素,而在氯化钠的存在下,阳离子基团的含量是主要因素。在没有盐的情况下,嵌段多两性电解质表现出比无规多两性电解质更高的吸附性。 XRD结果也表明嵌段聚两性电解质比无规聚两性电解质具有更好的插层效果。

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