Quantitative three-dimensional modeling of zeotile through discrete electron tomography

Discrete electron tomography is a new approach for three-dimensional reconstruction of nanoscale objects. The technique exploits prior knowledge of the object to be reconstructed, which results in an improvement of the quality of the reconstructions. Through the combination of conventional transmiss...

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Published in:Journal of the American Chemical Society Vol. 131; no. 13; p. 4769
Main Authors: Bals, Sara, Batenburg, K Joost, Liang, Duoduo, Lebedev, Oleg, Van Tendeloo, Gustaaf, Aerts, Alexander, Martens, Johan A, Kirschhock, Christine E A
Format: Journal Article
Language:English
Published: United States 08.04.2009
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ISSN:1520-5126, 1520-5126
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Abstract Discrete electron tomography is a new approach for three-dimensional reconstruction of nanoscale objects. The technique exploits prior knowledge of the object to be reconstructed, which results in an improvement of the quality of the reconstructions. Through the combination of conventional transmission electron microscopy and discrete electron tomography with a model-based approach, quantitative structure determination becomes possible. In the present work, this approach is used to unravel the building scheme of Zeotile-4, a silica material with two levels of structural order. The layer sequence of slab-shaped building units could be identified. Successive layers were found to be related by a rotation of 120 degrees, resulting in a hexagonal space group. The Zeotile-4 material is a demonstration of the concept of successive structuring of silica at two levels. At the first level, the colloid chemical properties of Silicalite-1 precursors are exploited to create building units with a slablike geometry. At the second level, the slablike units are tiled using a triblock copolymer to serve as a mesoscale structuring agent.
AbstractList Discrete electron tomography is a new approach for three-dimensional reconstruction of nanoscale objects. The technique exploits prior knowledge of the object to be reconstructed, which results in an improvement of the quality of the reconstructions. Through the combination of conventional transmission electron microscopy and discrete electron tomography with a model-based approach, quantitative structure determination becomes possible. In the present work, this approach is used to unravel the building scheme of Zeotile-4, a silica material with two levels of structural order. The layer sequence of slab-shaped building units could be identified. Successive layers were found to be related by a rotation of 120 degrees, resulting in a hexagonal space group. The Zeotile-4 material is a demonstration of the concept of successive structuring of silica at two levels. At the first level, the colloid chemical properties of Silicalite-1 precursors are exploited to create building units with a slablike geometry. At the second level, the slablike units are tiled using a triblock copolymer to serve as a mesoscale structuring agent.
Discrete electron tomography is a new approach for three-dimensional reconstruction of nanoscale objects. The technique exploits prior knowledge of the object to be reconstructed, which results in an improvement of the quality of the reconstructions. Through the combination of conventional transmission electron microscopy and discrete electron tomography with a model-based approach, quantitative structure determination becomes possible. In the present work, this approach is used to unravel the building scheme of Zeotile-4, a silica material with two levels of structural order. The layer sequence of slab-shaped building units could be identified. Successive layers were found to be related by a rotation of 120 degrees, resulting in a hexagonal space group. The Zeotile-4 material is a demonstration of the concept of successive structuring of silica at two levels. At the first level, the colloid chemical properties of Silicalite-1 precursors are exploited to create building units with a slablike geometry. At the second level, the slablike units are tiled using a triblock copolymer to serve as a mesoscale structuring agent.Discrete electron tomography is a new approach for three-dimensional reconstruction of nanoscale objects. The technique exploits prior knowledge of the object to be reconstructed, which results in an improvement of the quality of the reconstructions. Through the combination of conventional transmission electron microscopy and discrete electron tomography with a model-based approach, quantitative structure determination becomes possible. In the present work, this approach is used to unravel the building scheme of Zeotile-4, a silica material with two levels of structural order. The layer sequence of slab-shaped building units could be identified. Successive layers were found to be related by a rotation of 120 degrees, resulting in a hexagonal space group. The Zeotile-4 material is a demonstration of the concept of successive structuring of silica at two levels. At the first level, the colloid chemical properties of Silicalite-1 precursors are exploited to create building units with a slablike geometry. At the second level, the slablike units are tiled using a triblock copolymer to serve as a mesoscale structuring agent.
Author Batenburg, K Joost
Liang, Duoduo
Van Tendeloo, Gustaaf
Martens, Johan A
Lebedev, Oleg
Kirschhock, Christine E A
Aerts, Alexander
Bals, Sara
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  surname: Bals
  fullname: Bals, Sara
  email: Sara.Bals@ua.ac.be
  organization: EMAT, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium. Sara.Bals@ua.ac.be
– sequence: 2
  givenname: K Joost
  surname: Batenburg
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  givenname: Duoduo
  surname: Liang
  fullname: Liang, Duoduo
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  givenname: Oleg
  surname: Lebedev
  fullname: Lebedev, Oleg
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  givenname: Gustaaf
  surname: Van Tendeloo
  fullname: Van Tendeloo, Gustaaf
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  givenname: Alexander
  surname: Aerts
  fullname: Aerts, Alexander
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  givenname: Johan A
  surname: Martens
  fullname: Martens, Johan A
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  givenname: Christine E A
  surname: Kirschhock
  fullname: Kirschhock, Christine E A
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Snippet Discrete electron tomography is a new approach for three-dimensional reconstruction of nanoscale objects. The technique exploits prior knowledge of the object...
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SubjectTerms Electron Microscope Tomography - methods
Imaging, Three-Dimensional - methods
Microscopy, Electron, Transmission
Models, Molecular
Molecular Conformation
Zeolites - chemical synthesis
Zeolites - chemistry
Title Quantitative three-dimensional modeling of zeotile through discrete electron tomography
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