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Interaction of divalent copper with two diaminealkyl hexagonal mesoporous silicas evaluated by adsorption and thermochemical data

机译:通过吸附和热化学数据评估二价铜与两种二胺烷基六方介孔二氧化硅的相互作用

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Hexagonal mesoporous silicas chemically modified with ethylenediamine moieties were synthesized through the co-condensation of tetraethylorthosilicate (TEOS) with two different silylating agents: (ⅰ) N-[3-(trimethoxysilyl)propyl]-ethylenediamine and (ⅱ) the new agent prepared from the incorporation of the ethylenediamine molecule into the epoxide group of the precursor 3-glycidoxypropyltrimethoxysilane. From these silylating agents under neutral n-octylamine template methodology, the respective MNN and MGNN inorganic-organic hybrids were synthesized. Elemental analysis showed that the number of pendant groups in these hybrids were 1.69 and 1.62 mmol g~(-1), with pore diameters and surface areas of 1.81 and 1.53 nm and 663 ± 14 and 614 ± 16 m~2 g~(-1). Infrared spectroscopy, nuclear magnetic resonance for ~(13)C and ~(29)Si nuclei and X-ray diffraction patterns are in agreement with the success of the proposed synthetic methods, as confirmed for the formation of the mesoporous hybrids. Both mesoporous materials have been used for divalent copper adsorption from aqueous solution at 298 ± 1 K. The series of adsorption isotherms were adjusted to a modified Langmuir equation. The maximum number of moles adsorbed gave 1.4 ± 0.1 and 1.4 ± 0.2 mmol g~(-1) for MNN and MGNN, respectively. The same interactions were calorimetrically followed and gave exothermic enthalpy, negative Gibbs free energy and positive entropy values. These favorable thermodynamic data indicate cationitrogen basic center interactions on the new mesoporous materials at the liquid/solid interface for both systems.
机译:通过用原硅酸四乙酯(TEOS)与两种不同的甲硅烷基化剂共缩合来合成经乙二胺部分化学改性的六方介孔二氧化硅:(ⅰ)N- [3-(三甲氧基甲硅烷基)丙基]-乙二胺和(ⅱ)由将乙二胺分子结合到前体3-环氧丙氧基丙基三甲氧基硅烷的环氧基中。在中性正辛胺模板方法下,由这些甲硅烷基化剂合成了相应的MNN和MGNN无机-有机杂化物。元素分析表明,这些杂种的侧基数目分别为1.69和1.62 mmol g〜(-1),孔径和表面积分别为1.81和1.53 nm以及663±14和614±16 m〜2 g〜(-)。 1)。红外光谱,〜(13)C和〜(29)Si核的核磁共振以及X射线衍射图与所提出的合成方法的成功相符,证实了介孔杂化体的形成。两种介孔材料都已用于在298±1 K下从水溶液中吸附二价铜。将一系列吸附等温线调整为修正的Langmuir方程。 MNN和MGNN的最大吸附摩尔数分别为1.4±0.1和1.4±0.2 mmol g〜(-1)。量热法遵循相同的相互作用,并给出放热焓,负吉布斯自由能和正熵值。这些有利的热力学数据表明两种系统在液/固界面处新介孔材料上的阳离子/氮基本中心相互作用。

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