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压缩 CO2 介导的介孔有机硅形成过程中,非离子表面活性剂功能的研究。

Investigation on the function of nonionic surfactants during compressed CO-mediated periodic mesoporous organosilica formation.

机构信息

Department of Chemistry, Capital Normal University, Beijing, 100048, China.

出版信息

Soft Matter. 2017 Aug 30;13(34):5704-5713. doi: 10.1039/c7sm01134b.

Abstract

A systematic study on the structural properties and component information of periodic mesoporous organosilicas synthesized by using different nonionic surfactants as templates with compressed CO was carried out. Triblock copolymers (F127, F108, and P123), oligomeric alkyl poly(ethylene oxide) (Brij-58 and Brij-76), and alkyl-phenol poly(ethylene oxide) (TX-100) have been employed as templates and BTEB as a bridged organosilica precursor to synthesize PMO materials at 5.90 MPa. The structure and morphology of the obtained materials were investigated by means of transmission electron microscopy (TEM), nitrogen sorption isotherms, solid Si and C NMR, and FTIR. Efforts have also been made to compare the differences in structural and morphological properties among these samples synthesized under similar conditions. We also investigate the synthesis of PMOs using F127 as the template at different CO pressures. It was found that the interaction between different organic silica precursors and surfactants with a variety of hydrophilic and hydrophobic chains is the key factor for the disorder degree of mesostructures. On this basis, the possible mechanism of formation of PMOs synthesized using a nonionic surfactant (triblock copolymer) as the template with compressed CO is illustrated and discussed.

摘要

采用不同的非离子表面活性剂作为模板,用压缩 CO2 对周期性介孔有机硅的结构性能和组成信息进行了系统研究。三嵌段共聚物(F127、F108 和 P123)、低聚烷基聚(氧化乙烯)(Brij-58 和 Brij-76)和烷基酚聚(氧化乙烯)(TX-100)被用作模板,BTEB 作为桥联有机硅前体,在 5.90 MPa 下合成 PMO 材料。通过透射电子显微镜(TEM)、氮气吸附等温线、固体 Si 和 C NMR 以及傅里叶变换红外光谱(FTIR)对所得材料的结构和形态进行了研究。还努力比较了在相似条件下合成的这些样品在结构和形态性质方面的差异。我们还研究了在不同 CO 压力下使用 F127 作为模板合成 PMO 的情况。结果表明,不同有机硅前体与具有各种亲水性和疏水性链的表面活性剂之间的相互作用是介孔结构无序程度的关键因素。在此基础上,对用压缩 CO2 作为模板的非离子表面活性剂(三嵌段共聚物)合成 PMO 的可能形成机制进行了说明和讨论。

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