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Electron-tomography determination of the packing structure of mecroporous ordered siliceous foams assembled from vesicles

  • Pel Yuan
  • , Xufeng Zhou
  • , Hongning Wang
  • , Nian Liu
  • , Hu Yifan
  • , Graeme J. Auchterlonie
  • , John Drennan
  • , Xiangdong Yao
  • , Gao Qing Lu
  • , Jin Zou
  • , Yu Chengzhong
  • Fudan University
  • University of Queensland

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

The packing structures of macroporous ordered siliceous foams (MOSFs) are systematically investigated by using a 3D electron tomography technique and the nanostructural characteristics for layered MOSFs are resolved. MOSF materials adopt an ordered 2D hexagonal arrangement in single- layered areas, regular honeycomb patterns in double-layered samples, and polyhedric cells similar to a Weaire-Phelan structure in multilayered areas, all following the principle of minimizing surface area, which is well understood in soap foams at the macroscopic scale. In surfactant-templated materials, liquid-crystal templating is generally applied, but here it is revealed that the surface-area-minimization principle can also be applied, which facilitates the design and synthesis of novel macroporous materials using surfactant molecules as templates.

Original languageEnglish
Pages (from-to)377-382
Number of pages6
JournalSmall
Volume5
Issue number3
DOIs
StatePublished - 6 Feb 2009

Keywords

  • Electron tomography
  • Nanostrctures
  • Self-assembly
  • Silica
  • Soft materials

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