首页> 外文期刊>Journal of Polymer Research >In situ crosslinking of poly(vinyl alcohol)/graphene oxide Nano-composite hydrogel: intercalation structure and adsorption mechanism for advanced Pb(II) removal
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In situ crosslinking of poly(vinyl alcohol)/graphene oxide Nano-composite hydrogel: intercalation structure and adsorption mechanism for advanced Pb(II) removal

机译:在原位交联聚(乙烯醇)/石墨烯纳米复合水凝胶:高级Pb(II)去除的嵌入结构和吸附机理

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摘要

Based on the industrialized graphene oxide (GO) product, poly(vinyl alcohol) (PVA)/GO nano-composite hydrogels were prepared through in situ crosslinking by incorporation of N-[(trimethoxysilyl)propyl] ethylenediamine-triacetic acid sodium (CSA) as a compatibilizer. Introduction of CSA led to more efficient grafting of PVA molecules onto GO surface with increasing average layer thickness through covalent and hydrogen bonding interaction, while GO was exfoliated and uniformly distributed in PVA matrix. Addition of appropriate content of GO can improve the storage modulus and the effective crosslinking density (υ~(e)) of the composite hydrogel, and the network structure with GO as crosslinking point formed, resulting in the remarkable increase of the hydraulic impact resistance, mechanical strength and toughness of the hydrogel. Pb_(2+)adsorption capacity of the hydrogel increased with GO content, while the adsorption belonged to the second-order kinetic model and fitted Langmuir adsorption isotherm model, indicating the homogeneous nature of monolayer chemical adsorption of Pb_(2+). A relatively good reusability of the composite hydrogel beads for Pb_(2+)removal can be achieved.
机译:基于工业化的石墨烯氧化物(GO)产物,通过掺入N - [(三甲氧基甲硅烷基)丙基乙二胺 - 三乙酸钠(CSA),通过原位交联制备聚(乙烯醇)/去纳米复合水凝胶。作为一个增容剂。 CSA的引入导致通过共价和氢键相互作用增加平均层厚度的PVA分子将PVA分子移植到去表面上,同时去除并均匀地分布在PVA基质中。添加适当的GO含量可以改善复合水凝胶的储存模量和有效的交联密度(υ〜(e)),并且随着交联点形成的网络结构,导致液压抗冲击性的显着增加,水凝胶的机械强度和韧性。水凝胶的PB_(2+)吸附能力随含量的增加而增加,而吸附属于二阶动力学模型和leangmuir吸附等温线模型,表明单层化学吸附的Pb_(2+)的均匀性质。可以实现对PB_(2+)去除的复合水凝胶珠的相对良好的可重用性。

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