Thin and continuous films with controlled bi- and tri-modal porosities by embedment of zeolite nanoparticles in a mesoporous matrix

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TY  - JOUR
  - Farrell, R. A.,Petkov, N.,Amenitsch, H.,Holmes, J. D.,Morris, M. A.
  - 2008
  - January
  - Journal of Materials Chemistry
  - Thin and continuous films with controlled bi- and tri-modal porosities by embedment of zeolite nanoparticles in a mesoporous matrix
  - Validated
  - ()
  - 18
  - 19
  - 2213
  - 2220
  - Continuous, well-adhered silicon dioxide thin films ( similar to 100 nm) with multi-mode porosity ( micro/meso/macro) have been fabricated through a series of inorganic-organic self-assembly techniques, in essence, combining zeolite nanoparticles and a 2D hexagonal structured mesoporous system in a facile but effective approach. Silicalite-1 nanoparticles ( average particle size similar to 60 nm) were added to a mixture of block co-polymer ( Pluronic 123 and Brij 56) and tetraethoxyorthosilane ( TEOS) and the resulting solution deposited as a thin film via spin coating techniques. Under low loadings of zeolite nanoparticles, the calcined films retain their conventional 2D hexagonal array of pores but at high concentrations of nanoparticles, part of the mesoporous structure is converted to a macroporous structure as a result of accumulating intrinsic stress within the thin film. Nanoparticle loaded thin films with concentrations close to 70% were possible as the mesoporous structure functions as an adhesion promoter for the zeolite nanoparticles and, crucially, it does not interfere with the accessibility of the zeolite nanoparticles. Furthermore, we explore the pore diffusion and templating properties of these novel films by infilling with germanium nanocrystals via supercritical fluid inclusion methods within the channels of the mesoporous segments of the films.
  - 0959-9428
  - ://000255450900007
DA  - 2008/01
ER  - 
@article{V16860751,
   = {Farrell,  R. A. and Petkov,  N. and Amenitsch,  H. and Holmes,  J. D. and Morris,  M. A. },
   = {2008},
   = {January},
   = {Journal of Materials Chemistry},
   = {Thin and continuous films with controlled bi- and tri-modal porosities by embedment of zeolite nanoparticles in a mesoporous matrix},
   = {Validated},
   = {()},
   = {18},
   = {19},
  pages = {2213--2220},
   = {{Continuous, well-adhered silicon dioxide thin films ( similar to 100 nm) with multi-mode porosity ( micro/meso/macro) have been fabricated through a series of inorganic-organic self-assembly techniques, in essence, combining zeolite nanoparticles and a 2D hexagonal structured mesoporous system in a facile but effective approach. Silicalite-1 nanoparticles ( average particle size similar to 60 nm) were added to a mixture of block co-polymer ( Pluronic 123 and Brij 56) and tetraethoxyorthosilane ( TEOS) and the resulting solution deposited as a thin film via spin coating techniques. Under low loadings of zeolite nanoparticles, the calcined films retain their conventional 2D hexagonal array of pores but at high concentrations of nanoparticles, part of the mesoporous structure is converted to a macroporous structure as a result of accumulating intrinsic stress within the thin film. Nanoparticle loaded thin films with concentrations close to 70% were possible as the mesoporous structure functions as an adhesion promoter for the zeolite nanoparticles and, crucially, it does not interfere with the accessibility of the zeolite nanoparticles. Furthermore, we explore the pore diffusion and templating properties of these novel films by infilling with germanium nanocrystals via supercritical fluid inclusion methods within the channels of the mesoporous segments of the films.}},
  issn = {0959-9428},
   = {://000255450900007},
  source = {IRIS}
}
AUTHORSFarrell, R. A.,Petkov, N.,Amenitsch, H.,Holmes, J. D.,Morris, M. A.
YEAR2008
MONTHJanuary
JOURNAL_CODEJournal of Materials Chemistry
TITLEThin and continuous films with controlled bi- and tri-modal porosities by embedment of zeolite nanoparticles in a mesoporous matrix
STATUSValidated
TIMES_CITED()
SEARCH_KEYWORD
VOLUME18
ISSUE19
START_PAGE2213
END_PAGE2220
ABSTRACTContinuous, well-adhered silicon dioxide thin films ( similar to 100 nm) with multi-mode porosity ( micro/meso/macro) have been fabricated through a series of inorganic-organic self-assembly techniques, in essence, combining zeolite nanoparticles and a 2D hexagonal structured mesoporous system in a facile but effective approach. Silicalite-1 nanoparticles ( average particle size similar to 60 nm) were added to a mixture of block co-polymer ( Pluronic 123 and Brij 56) and tetraethoxyorthosilane ( TEOS) and the resulting solution deposited as a thin film via spin coating techniques. Under low loadings of zeolite nanoparticles, the calcined films retain their conventional 2D hexagonal array of pores but at high concentrations of nanoparticles, part of the mesoporous structure is converted to a macroporous structure as a result of accumulating intrinsic stress within the thin film. Nanoparticle loaded thin films with concentrations close to 70% were possible as the mesoporous structure functions as an adhesion promoter for the zeolite nanoparticles and, crucially, it does not interfere with the accessibility of the zeolite nanoparticles. Furthermore, we explore the pore diffusion and templating properties of these novel films by infilling with germanium nanocrystals via supercritical fluid inclusion methods within the channels of the mesoporous segments of the films.
PUBLISHER_LOCATION
ISBN_ISSN0959-9428
EDITION
URL://000255450900007
DOI_LINK
FUNDING_BODY
GRANT_DETAILS