Composite mesostructures by nano-confinement.

نویسندگان

  • Yiying Wu
  • Guosheng Cheng
  • Kirill Katsov
  • Scott W Sides
  • Jianfang Wang
  • Jing Tang
  • Glenn H Fredrickson
  • Martin Moskovits
  • Galen D Stucky
چکیده

In a physically confined environment, interfacial interactions, symmetry breaking, structural frustration and confinement-induced entropy loss can play dominant roles in determining molecular organization. Here we present a systematic study of the confined assembly of silica-surfactant composite mesostructures within cylindrical nanochannels of varying diameters. Using exactly the same precursors and reaction conditions that form the two-dimensional hexagonal SBA-15 mesostructured thin film, unprecedented silica mesostructures with chiral mesopores such as single- and double-helical geometries spontaneously form inside individual alumina nanochannels. On tightening the degree of confinement, a transition is observed in the mesopore morphology from a coiled cylindrical to a spherical cage-like geometry. Self-consistent field calculations carried out to account for the observed mesostructures accord well with experiment. The mesostructures produced by confined syntheses are useful as templates for fabricating highly ordered mesostructured nanowires and nanowire arrays.

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عنوان ژورنال:
  • Nature materials

دوره 3 11  شماره 

صفحات  -

تاریخ انتشار 2004