Synthesis of cubic Ia-3d mesoporous silica in anionic surfactant templating system with the aid of acetate

[Display omitted] •The cubic Ia-3d mesostructure was obtained with the aid of sodium acetate.•Salts have the ability to induce caterpillar-like morphology of mesoporous silica.•Di-amine functionalized 3D bicontinuous cubic Ia-3d mesoporous silicas were obtained. Mesoporous silica with three-dimensio...

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Veröffentlicht in:Journal of colloid and interface science 2014-08, Vol.427 (427), p.42-48
Hauptverfasser: Deng, Shao-Xin, Xu, Xue-Yan, He, Wen-Chao, Wang, Jin-Gui, Chen, Tie-Hong
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Sprache:eng
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Zusammenfassung:[Display omitted] •The cubic Ia-3d mesostructure was obtained with the aid of sodium acetate.•Salts have the ability to induce caterpillar-like morphology of mesoporous silica.•Di-amine functionalized 3D bicontinuous cubic Ia-3d mesoporous silicas were obtained. Mesoporous silica with three-dimensional (3D) bicontinuous cubic Ia-3d structure and fascinating caterpillar-like morphology was synthesized by using anionic surfactant N-lauroylsarcosine sodium (Sar-Na) as the template and 3-amionpropyltrimethoxysilane (APS) as the co-structure-directing agent (CSDA) with the aid of acetate. A phase transformation from high interfacial curvature 2D hexagonal to low interfacial curvature 3D cubic Ia-3d occurred in the presence of a proper amount of acetate. Other species of salts (excluding acetate) had the ability to induce the caterpillar-like morphology, but failed to induce the cubic Ia-3d mesostructure. Furthermore, [3-(2-aminoethyl)-aminopropyl]trimethoxysilane (DAPS) was also used as the CSDA to synthesize Ia-3d mesostructured silica under the aid of sodium acetate. After extraction of the anionic surfactants, amino and di-amine functionalized 3D bicontinuous cubic Ia-3d mesoporous silicas were obtained and used as supports to immobilize Pd nanoparticles for supported catalysts. The catalytic activity of the catalysts was tested by catalytic hydrogenation of allyl alcohol.
ISSN:0021-9797
1095-7103
DOI:10.1016/j.jcis.2013.12.028