首页> 外文期刊>Beilstein Journal of Nanotechnology >Tailoring bifunctional hybrid organica??inorganic nanoadsorbents by the choice of functional layer composition probed by adsorption of Cu2+ ions
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Tailoring bifunctional hybrid organica??inorganic nanoadsorbents by the choice of functional layer composition probed by adsorption of Cu2+ ions

机译:通过选择通过吸附Cu2 +离子探测的功能层组成来定制双功能杂化有机有机无机无机吸附剂

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Spherical silica particles with bifunctional (≡Si(CH2)3NH2/≡SiCH3, ≡Si(CH2)3NH2/≡Si(CH2)2(CF2)5CF3) surface layers were produced by a one-step approach using a modified Stöber method in three-component alkoxysilane systems, resulting in greatly increased contents of functional components. The content of functional groups and thermal stability of the surface layers were analyzed by diffuse reflectance infrared Fourier transform (DRIFT) spectroscopy, and 13C and 29Si solid-state NMR spectroscopy revealing their composition and organization. The fine chemical structure of the surface in the produced hybrid adsorbent particles and the ligand distribution were further investigated by electron paramagnetic resonance (EPR) and electron spectroscopy of diffuse reflectance (ESDR) spectroscopy using Cu2+ ion coordination as a probe. The composition and structure of the emerging surface complexes were determined and used to provide an insight into the molecular structure of the surfaces. It was demonstrated that the introduction of short hydrophobic (methyl) groups improves the kinetic characteristics of the samples during the sorption of copper(II) ions and promotes fixation of aminopropyl groups on the surface of silica microspheres. The introduction of long hydrophobic (perfluoroctyl) groups changes the nature of the surface, where they are arranged in alternately hydrophobic/hydrophilic patches. This makes the aminopropyl groups huddled and less active in the sorption of metal cations. The size and aggregation/morphology of obtained particles was optimized controlling the synthesis conditions, such as concentrations of reactants, basicity of the medium, and the process temperature.
机译:使用改良的Stöber方法,通过一步法,制备了具有双官能(≡Si(CH2)3NH2 /≡SiCH3,≡Si(CH2)3NH2 /≡Si(CH2)2(CF2)5CF3)表面层的球形二氧化硅颗粒三组分烷氧基硅烷体系,导致功能组分的含量大大增加。通过漫反射红外傅里叶变换(DRIFT)光谱分析了表面层的官能团含量和热稳定性,并通过13C和29Si固态NMR光谱揭示了它们的组成和组织。通过电子顺磁共振(EPR)和以Cu2 +离子配位为探针的漫反射电子光谱(ESDR)光谱,进一步研究了产生的混合吸附剂颗粒中表面的精细化学结构和配体分布。确定了新兴表面复合物的组成和结构,并用于深入了解表面的分子结构。结果表明,引入短的疏水性(甲基)基团可改善样品在吸附铜(II)离子过程中的动力学特性,并促进氨基丙基在二氧化硅微球表面的固定。长疏水性(全氟丙基)基团的引入改变了表面的性质,在表面上它们交替排列成疏水性/亲水性斑点。这使得氨丙基缩合并且在金属阳离子的吸附中活性较低。优化所得颗粒的大小和聚集/形态,以控制合成条件,例如反应物的浓度,介质的碱性和工艺温度。

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