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  • Highly ordered mesoporous SBA-15-based silica nanocomposite materials are receiving a great deal of attention due to their interesting structure, which allows hosting nanoparticles for catalytic applications, among many other things. However, to maximize catalytic efficiency, understanding the relationship between their structures and surface chemistries as well as different properties at the subnanometer scale is required. This is essential in order to correlate their structure with their properties and, thereby, develop materials with the best performance. However, such studies are sometimes limited by the lack of reliable characterization techniques, particularly those offering minimal induced damage to the material while allowing detailed analysis of its microstructural features. Therefore, development of such techniques is essential for the overall improvement of catalytic materials.
  • Highly ordered mesoporous SBA-15-based silica nanocomposite materials are receiving a great deal of attention due to their interesting structure, which allows hosting nanoparticles for catalytic applications, among many other things. However, to maximize catalytic efficiency, understanding the relationship between their structures and surface chemistries as well as different properties at the subnanometer scale is required. This is essential in order to correlate their structure with their properties and, thereby, develop materials with the best performance. However, such studies are sometimes limited by the lack of reliable characterization techniques, particularly those offering minimal induced damage to the material while allowing detailed analysis of its microstructural features. Therefore, development of such techniques is essential for the overall improvement of catalytic materials. (en)
Title
  • Low Energy TEM Characterizations of Ordered Mesoporous Silica-Based Nanocomposite Materials for Catalytic Applications
  • Low Energy TEM Characterizations of Ordered Mesoporous Silica-Based Nanocomposite Materials for Catalytic Applications (en)
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  • Low Energy TEM Characterizations of Ordered Mesoporous Silica-Based Nanocomposite Materials for Catalytic Applications
  • Low Energy TEM Characterizations of Ordered Mesoporous Silica-Based Nanocomposite Materials for Catalytic Applications (en)
skos:notation
  • RIV/68081731:_____/14:00436806!RIV15-AV0-68081731
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  • 26669
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  • RIV/68081731:_____/14:00436806
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  • low energy electron mkicroscopy; nanocomposites; catalyses (en)
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  • US - Spojené státy americké
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  • Microscopy and Microanalysis
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  • 20
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  • Mikmeková, Eliška
  • Ismail, A. A.
  • Das, S.
  • Asefa, T.
  • Goswami, A.
  • Al-Sharab, J. F.
  • El-Sheikh, S. M.
  • Hesari, M.
  • Maran, F.
issn
  • 1431-9276
number of pages
http://bibframe.org/vocab/doi
  • 10.1017/S1431927614011234
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