Nanostructured polysilsesquioxanes bearing amine and ammonium groups by micelle templating using anionic surfactants

We report the synthesis of new mesoporous nanostructured polysilsesquioxanes by hydrolysis-polycondensation procedures of silylated amine or ammonium precursors. The formation of materials with defined architectures and pore arrangements on a mesoscopic length scale was achieved via soft-templating...

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Published inJournal of materials chemistry Vol. 20; no. 19; pp. 3910 - 3917
Main Authors Nguyen, Thy Phuong, Hesemann, Peter, Linh Tran, Thi My, Moreau, Joël J. E.
Format Journal Article
LanguageEnglish
Published Royal Society of Chemistry 01.01.2010
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Abstract We report the synthesis of new mesoporous nanostructured polysilsesquioxanes by hydrolysis-polycondensation procedures of silylated amine or ammonium precursors. The formation of materials with defined architectures and pore arrangements on a mesoscopic length scale was achieved via soft-templating approaches using anionic surfactants as structure directing agents. For the first time, nanostructured polysilsesquioxanes were obtained with anionic surfactants following a S super(-)I super(+) pathway. Structuring was achieved due to electrostatic interactions between the cationic centers of ammonium precursors and the anionic head group of the sulfate surfactant. This study highlights that specific precursor-surfactant interactions are essential for the formation of nanostructured materials. The obtained new materials are useful for the immobilization of metallic species via the formation of coordination complexes or anion exchange reactions and therefore have high potential as heterogeneous catalysts or adsorbents.
AbstractList We report the synthesis of new mesoporous nanostructured polysilsesquioxanes by hydrolysis-polycondensation procedures of silylated amine or ammonium precursors. The formation of materials with defined architectures and pore arrangements on a mesoscopic length scale was achieved via soft-templating approaches using anionic surfactants as structure directing agents. For the first time, nanostructured polysilsesquioxanes were obtained with anionic surfactants following a S super(-)I super(+) pathway. Structuring was achieved due to electrostatic interactions between the cationic centers of ammonium precursors and the anionic head group of the sulfate surfactant. This study highlights that specific precursor-surfactant interactions are essential for the formation of nanostructured materials. The obtained new materials are useful for the immobilization of metallic species via the formation of coordination complexes or anion exchange reactions and therefore have high potential as heterogeneous catalysts or adsorbents.
We report the synthesis of new mesoporous nanostructured polysilsesquioxanes by hydrolysis–polycondensation procedures of silylated amine or ammonium precursors. The formation of materials with defined architectures and pore arrangements on a mesoscopic length scale was achieved via soft-templating approaches using anionic surfactants as structure directing agents. For the first time, nanostructured polysilsesquioxanes were obtained with anionic surfactants following a SI+ pathway. Structuring was achieved due to electrostatic interactions between the cationic centers of ammonium precursors and the anionic head group of the sulfate surfactant. This study highlights that specific precursor–surfactant interactions are essential for the formation of nanostructured materials. The obtained new materials are useful for the immobilization of metallic species via the formation of coordination complexes or anion exchange reactions and therefore have high potential as heterogeneous catalysts or adsorbents.
Author Linh Tran, Thi My
Hesemann, Peter
Nguyen, Thy Phuong
Moreau, Joël J. E.
Author_xml – sequence: 1
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  fullname: Nguyen, Thy Phuong
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  givenname: Thi My
  surname: Linh Tran
  fullname: Linh Tran, Thi My
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  givenname: Joël J. E.
  surname: Moreau
  fullname: Moreau, Joël J. E.
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silica hybrid materials
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Snippet We report the synthesis of new mesoporous nanostructured polysilsesquioxanes by hydrolysis-polycondensation procedures of silylated amine or ammonium...
We report the synthesis of new mesoporous nanostructured polysilsesquioxanes by hydrolysis–polycondensation procedures of silylated amine or ammonium...
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SubjectTerms Amines
Architecture
Cationic
Chemical Sciences
Material chemistry
Nanostructure
Polysilsesquioxanes
Precursors
Sulfates
Surfactants
Title Nanostructured polysilsesquioxanes bearing amine and ammonium groups by micelle templating using anionic surfactants
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