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Characterization and Applications of Kaolinite Robustly Grafted by an Ionic Liquid with Naphthyl Functionality

机译:具有萘曲基官能度的离子液体鲁棒地接枝的高岭石的表征及应用

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Functionalization of the kaolinite (K) interlayer space is challenging. In this work, a new kaolinite-based nanohybridmaterial (K-NI) was successfully synthesized by grafting on the interlayer aluminol surfaces the ionic liquid, 1-(1-methylnaphthyl)-3-(2-hydroxyethyl) imidazolium chloride (NI), using a guest displacement strategy. A substantial increase of the basal spacing (10.8 ?) was obtained. This is a grafted derivative of kaolinite possessing one of the largest d -values. Washing in water for several days and other vigorous treatments such as sonication showed a minor effect on the integrity of the material. FTIR and 13 C NMR confirmed the conservation of the structure of the ionic liquid after the grafting. Thermal analysis confirmed the presence of grafted material and was used to estimate the abundance of the grafted ionic liquid (0.44 mole per mole of kaolinite structural formula, (Al 2 Si 2 O 5 (OH) 4 )). By using cyclic voltammetry, the permeability of a film of K-NI for the bulky ferricyanide ions was demonstrated. The accumulation of nitrophenolate anions was effective (maximum capacity of 190 μmol/g), but was less important than what was expected due to the steric hindrance of the bulky grafted NI. Although the presence of chloride anions reduced the adsorption capacity, the affinity of the modified kaolinite interlayer space for the nitrophenolate anions was demonstrated.
机译:高岭石(k)层间空间的官能化是具有挑战性的。在这项工作中,通过在层间铝醇表面上移植离子液体,1-(1-甲基萘基)-3-(2-羟基乙基)咪唑鎓氯化物(Ni)来成功地合成新的高岭石纳米植物(K-Ni)。使用客户流行策略。获得基础间距(10.8〜)的大幅增加。这是具有最大的D -Values之一的高岭石的接枝衍生物。在水中洗涤几天,其他剧烈的治疗如超声处理表现出对材料的完整性的轻微影响。 FTIR和13 C NMR确认嫁接后离子液体结构的保护。热分析证实存在接枝材料并用于估计接枝离子液体的丰度(每摩尔高岭石结构式0.44摩尔(Al 2 Si 2 O 5(OH)4))。通过使用循环伏安法,证明了昆基铁氰化物离子的K-Ni膜的渗透性。硝基苯甲酸盐阴离子的积累是有效的(最大容量为190μmol/ g),但不如由于庞大接枝Ni的空间障碍导致预期的重要性。虽然氯化物阴离子的存在降低了吸附能力,但对硝基苯甲酸酯阴离子的改性高岭石层间空间的亲和力进行了说明。

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