PERIODIC MESOPOROUS ORGANOSILICAS WITH CHEMICALLY IMMOBILIZED β CYCLODEXTRIN MOIETIES FOR BILE SALTS SORPTION

N. Roik, L. Belyakova
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Abstract

Mesoporous silicas of MCM‑41 type with surface silanol, 3-aminopropyl, and β‑cyclo­dextrin‑containing groups were prepared by hydrothermal‑assisted base‑catalyzed sol‑gel condensation of structure-forming silanes in the presence of micelles of long‑chain quaternary ammonium salt. Characterization of synthesized silica materials was realized by low‑tempe­rature nitrogen adsorption‑desorption and chemical analysis of surface layer. It was found that addition of ‑cyclodextrin‑containing silane into the sol‑gel reaction mixture causes formation of MCM‑41‑type organosilica with higher surface area and hexagonally arranged uniform mesoporous structure. Sorption ability of synthesized silica materials towards sodium cholate and sodium taurocholate was studied in dependence of solution pH and concentration. It was found that sorption increases due to chemical immobilization of oligosaccharide moieties in the surface layer of silica, and achieves maximal values in the pH regions of molecular forms of bile acids prevailing. Experimental sorption results were analyzed using Freundlich, Redlich - Peterson, and Brunauer - Emmett - Teller models. The formation of island-type structures of bile salts with β‑cyclodextrin-containing surface sorption centers due to cooperative interactions between sorbate moieties was proved.
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具有化学固定β环糊精部分的周期性介孔有机硅吸附胆盐
在长链季铵盐胶束存在下,采用水热辅助碱催化硅烷溶胶-凝胶缩合法制备了表面含硅醇、3-氨基丙基和β -环糊精基团的MCM - 41型介孔硅。通过低温氮吸附解吸和表层化学分析对合成的二氧化硅材料进行表征。结果表明,在溶胶-凝胶反应混合物中加入含环糊精的硅烷,可以得到比表面积高、六边形排列均匀介孔结构的MCM - 41型有机二氧化硅。研究了合成的二氧化硅材料对胆酸钠和牛磺胆酸钠的吸附能力与溶液pH和浓度的关系。结果表明,化学固定二氧化硅表层的寡糖基团增加了吸附量,并在主要胆汁酸分子形态的pH区域达到最大值。采用Freundlich、Redlich - Peterson和Brunauer - Emmett - Teller模型对实验吸附结果进行了分析。证实了胆盐表面吸附中心含有β -环糊精,由于山梨酸基团之间的协同相互作用而形成岛型结构。
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